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Paper Citation Record · LEDGER

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies

As of 17 August 2026, this Paper Citation Record lists 100 of 113 outbound references and 3 inbound Pith citation observations for arXiv:2504.18527.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2504.18527 v1

Coverage vector

measured 100 of 113 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-16T10:18:31.056299Z

measured 103 of 103 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

measured 3 of 3 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-15T17:57:46.083569Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-05-17T02:51:27.694724Z

Reference resolution

100 of 113 outbound references displayed

  • verified exact12
  • verified fuzzy0
  • unresolved63
  • parse uncertain0
  • malformed identifier24
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External citation measurements

No source-named external measurement is stored.

Outbound references

Observation e98cd3a0-2f81-4deb-874f-fa82991f4f5d · outbound

This paper cites Reports on Progress in Physics 61, 117 (1998) https://doi.org/10.1088/0034-4885/61/2/002.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Reports on Progress in Physics 61, 117 (1998) https://doi.org/10.1088/0034-4885/61/2/002

Reference 1

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Observation 1e41c52e-1fa5-47ef-b5ac-d9e4ebacb725 · outbound

This paper cites Springer (2020).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Springer (2020)

Reference 2

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doi, observed 2026-08-16T10:18:33.040110Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

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Observation c9b67cad-b5c7-4494-abfb-21898d726960 · outbound

This paper cites (ed.) The Future of Drug Development with Quantum Computing, pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies (ed.) The Future of Drug Development with Quantum Computing, pp

Reference 3

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verified exact
doi, observed 2026-08-16T10:18:32.858343Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-16T10:18:29.567996Z digest=sha256:7f177e752ca49b5ecca3ac8e3d657e7e8bad2a3f9a76e6c5c94159acae1a4f24

Observation 0fa30282-d156-4bd4-ac27-6c127fc99621 · outbound

This paper cites Nature Reviews Physics 2, 596–598 (2020) https://doi.org/10.1038/s42254-020-00247-5.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Reviews Physics 2, 596–598 (2020) https://doi.org/10.1038/s42254-020-00247-5

Reference 4

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source=pdf_text observed=2026-08-16T10:18:29.613249Z digest=sha256:f14226d24407d951f8def359125bf6d25878563b18f037d43373ca6eecd58458

Observation 93f74c62-dd2f-4ec8-afdc-6d964e9dd86a · outbound

This paper cites Quantum computing at the quantum advantage threshold: a down-to-business review.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Quantum computing at the quantum advantage threshold: a down-to-business review

Reference 5

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source=pdf_text observed=2026-08-16T10:18:29.617560Z digest=sha256:f4513944c26154af56eedb5eb5d0474f0204c76cc7fa685a89c9e5a78b2b48e2

Observation d38b2b8a-4901-44b9-b15d-1682b519633c · outbound

This paper cites 836–845 (2017).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies 836–845 (2017)

Reference 6

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source=pdf_text observed=2026-08-16T10:18:29.621743Z digest=sha256:bd359af3c39b9d197f502c605a97657a9ff3f5d9dd074d0e20058968e59410aa

Observation 9c9135a8-1cb3-4f2e-abb0-6dfb7b3c19a9 · outbound

This paper cites Quantum 2, 79 (2018) https://doi.org/10.22331/q-2018-08-06-79.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Quantum 2, 79 (2018) https://doi.org/10.22331/q-2018-08-06-79

Reference 7

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source=pdf_text observed=2026-08-16T10:18:29.625094Z digest=sha256:4c9a2658ffdb74da09ed7e5ca722ead423bbc843dea1f2dc97556921e66de2ff

Observation 80e36676-9e09-443c-b562-c0b7840a4d3f · outbound

This paper cites https://research .ibm.com/ blog/100k-qubit-supercomputer (2023).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://research .ibm.com/ blog/100k-qubit-supercomputer (2023)

Reference 8

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no resolver link, observed 2026-08-16T10:18:29.629644Z

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source=pdf_text observed=2026-08-16T10:18:29.629644Z digest=sha256:95e8662df704721423a2937f51477572a57be484222dbba73f360be86efb027e

Observation 3cf39cc3-035e-4fa8-899c-e6f533bc7514 · outbound

This paper cites https://www .gov.uk/government/publications/ national-quantum-strategy (2023).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://www .gov.uk/government/publications/ national-quantum-strategy (2023)

Reference 9

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source=pdf_text observed=2026-08-16T10:18:29.633225Z digest=sha256:e865757c8e235ddde0c528938718a1b84ea58e26bd49a90d04074f634f8fb766

Observation a8325f58-5a52-45f8-9d78-508a5ffd8a83 · outbound

This paper cites https://digital- strategy.ec.europa.eu/en/policies/quantum-technologies-flagship (2022) 22.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://digital- strategy.ec.europa.eu/en/policies/quantum-technologies-flagship (2022) 22

Reference 10

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source=pdf_text observed=2026-08-16T10:18:29.636351Z digest=sha256:06b56d54b127fcb552879f880dd1dcfdbcde6e3c652262f18f1b42380b479992

Observation 02676d81-f097-479e-892d-5350a30b322a · outbound

This paper cites Software: Practice and Experience 52, 66–114 (2022) https://doi.org/10.1002/ spe.3039.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Software: Practice and Experience 52, 66–114 (2022) https://doi.org/10.1002/ spe.3039

Reference 11

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source=pdf_text observed=2026-08-16T10:18:29.640024Z digest=sha256:a35cb5e5e9e39b4552355825fb9175140380c3486b513a3595bcc87c1779f386

Observation ab537561-e74e-4794-8520-f96e641f9040 · outbound

This paper cites The National Academies Press, Washington, DC (2019).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies The National Academies Press, Washington, DC (2019)

Reference 12

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malformed identifier
no resolver link, observed 2026-08-16T10:18:29.645418Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-16T10:18:29.645418Z digest=sha256:5ef5d530b0a3ba4c9ce0f7f1590e0bf838d14a3ab49bc4700925c74b4a66eec2

Observation 5522855c-ce03-4294-ad77-06cfe6178c9e · outbound

This paper cites Nature Reviews Materials 6, 875–891 (2021) https://doi.org/10.1038/s41578-021-00370-4.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Reviews Materials 6, 875–891 (2021) https://doi.org/10.1038/s41578-021-00370-4

Reference 13

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no resolver link, observed 2026-08-16T10:18:29.648658Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-16T10:18:29.648658Z digest=sha256:8a6ff6d2962b49f73e739f17932c3232bfb98dcf2ba6f3e2578be14c56a91056

Observation d9926220-6fb0-4742-b985-76fa31800154 · outbound

This paper cites Science 372(6539), 2823 (2021) https://doi.org/10.1126/science.abb2823 https://www.science.org/doi/pdf/10.1126/science.abb2823.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Science 372(6539), 2823 (2021) https://doi.org/10.1126/science.abb2823 https://www.science.org/doi/pdf/10.1126/science.abb2823

Reference 14

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source=pdf_text observed=2026-08-16T10:18:29.651888Z digest=sha256:f9d6536909fd759bba7f8e160913e4bacd6e75b8642578642856bf3a4c8e1fb1

Observation 260ac5db-d83d-4472-bcd8-089d103a48d4 · outbound

This paper cites Nature Reviews Physics 6, 160–161 (2024) https://doi.org/10.1038/s42254-024- 00706-3.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Reviews Physics 6, 160–161 (2024) https://doi.org/10.1038/s42254-024- 00706-3

Reference 15

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source=pdf_text observed=2026-08-16T10:18:29.654853Z digest=sha256:c7d077ef4622ccff1d32467033fa6d57ea7ef2c8ee0535473c0f8d0156780dcf

Observation b22867e1-2fba-4fec-a845-8165f0d1b9ba · outbound

This paper cites Reviews of Modern Physics 94, 15004 (2022) https://doi.org/10.1103/ RevModPhys.94.015004.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Reviews of Modern Physics 94, 15004 (2022) https://doi.org/10.1103/ RevModPhys.94.015004

Reference 16

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malformed identifier
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source=pdf_text observed=2026-08-16T10:18:29.676750Z digest=sha256:5089d6efa231285d644c9f4bd6c2d33a10a7b736546965fbb9cd57fa63d4a834

Observation cd6eb32d-82a1-4c71-8ebc-959ee3cc1afe · outbound

This paper cites APL Quantum 1(1), 011501 (2024) https://doi.org/10.1063/5.0180987 https://pubs.aip.org/aip/apq/article- pdf/doi/10.1063/5.0180987/19841793/011501 1 5.0180987.pdf.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies APL Quantum 1(1), 011501 (2024) https://doi.org/10.1063/5.0180987 https://pubs.aip.org/aip/apq/article- pdf/doi/10.1063/5.0180987/19841793/011501 1 5.0180987.pdf

Reference 17

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source=pdf_text observed=2026-08-16T10:18:29.761920Z digest=sha256:c6249a480578697e810c7429de733da82af7e069333b489e7484b9a0685a3315

Observation c69f80ea-9552-46dd-a3f5-fe21e3ee9706 · outbound

This paper cites Nature Reviews Physics 3, 625–644 (2021) https://doi .org/ 10.1038/s42254-021-00348-9.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Reviews Physics 3, 625–644 (2021) https://doi .org/ 10.1038/s42254-021-00348-9

Reference 18

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unresolved
no resolver link, observed 2026-08-16T10:18:29.844995Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-16T10:18:29.844995Z digest=sha256:3f4789795afb58719dd3f8731a8e4fde8ad6cd95e63de6d2a5c7e185b96e7622

Observation 85846dd3-f6de-4554-9ca5-c34c5030e8fc · outbound

This paper cites The European Physical Journal A 59, 94 (2023) https://doi .org/10.1140/epja/ s10050-023-01006-7.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies The European Physical Journal A 59, 94 (2023) https://doi .org/10.1140/epja/ s10050-023-01006-7

Reference 19

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source=pdf_text observed=2026-08-16T10:18:29.848858Z digest=sha256:d2e5ba537241559a8faa24244ad3b2825648fbfaa983a4d96a1999a3630d1d93

Observation ed4a6a5a-3a2d-4c8b-b91e-849441c71d5d · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 20

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malformed identifier
no resolver link, observed 2026-08-16T10:18:29.853551Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-16T10:18:29.853551Z digest=sha256:90d9133b3eb58053f9a4787df232ec292b177480cd3501055c22ee94a4005bd9

Observation 87bbf05e-6192-4447-83d3-e8f74d2273e7 · outbound

This paper cites EPJ Quantum Technology6(1), 2 (2019) https: //doi.org/10.1140/epjqt/s40507-019-0072-0.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies EPJ Quantum Technology6(1), 2 (2019) https: //doi.org/10.1140/epjqt/s40507-019-0072-0

Reference 21

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no resolver link, observed 2026-08-16T10:18:29.857153Z

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source=pdf_text observed=2026-08-16T10:18:29.857153Z digest=sha256:4aabd1ac36e6d39ee0e3072bf37202d6eb9e78e706fd4d5672bf6b742f02adf9

Observation fae8fea1-3faa-4861-908a-b0d18661f329 · outbound

This paper cites Nature 453(7198), 1031–1042 (2008) https://doi.org/10.1038/nature07128.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature 453(7198), 1031–1042 (2008) https://doi.org/10.1038/nature07128

Reference 22

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no resolver link, observed 2026-08-16T10:18:29.860807Z

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Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-16T10:18:29.860807Z digest=sha256:072109ce6ed7d9a51db7261c3e02b9fa614685e914cf79364c377cc1603cb395

Observation e860c16f-ad63-4e20-a8b7-e3cc16ce0ee9 · outbound

This paper cites Reports on Progress in Physics 80, 106001 (2017) https://doi .org/ 10.1088/1361-6633/aa7e1a.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Reports on Progress in Physics 80, 106001 (2017) https://doi .org/ 10.1088/1361-6633/aa7e1a

Reference 23

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no resolver link, observed 2026-08-16T10:18:29.913555Z

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source=pdf_text observed=2026-08-16T10:18:29.913555Z digest=sha256:ddb8b9c0b0c541b7f1a92e2acfbdce813908ed0143d28817e587f5c27c7ce71e

Observation 3899abf0-c1d8-4adf-ad04-50cf54cbf324 · outbound

This paper cites npj Quantum Information 8, 93 (2022) https://doi.org/10.1038/s41534-022-00600-9.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies npj Quantum Information 8, 93 (2022) https://doi.org/10.1038/s41534-022-00600-9

Reference 24

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verified exact
doi, observed 2026-08-16T10:18:32.703911Z

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-08-16T10:18:29.965887Z digest=sha256:1645676ca00f74b7acfd02431cb624139c2c71a19d122ea13c7d19f57b5cadcb

Observation 9b13b761-7631-4b12-bcf7-68f2f2ae604e · outbound

This paper cites Nature 634(8032), 74–79 (2024) https://doi.org/10.1038/s41586-024-07941-9.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature 634(8032), 74–79 (2024) https://doi.org/10.1038/s41586-024-07941-9

Reference 25

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source=pdf_text observed=2026-08-16T10:18:30.050051Z digest=sha256:e8d8a03f2a7df9a363bb331b5d74027aeed70565257fdc7f2f49e664f6927b9a

Observation 7ce72cb4-b042-454a-9bc6-cf576b67581f · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 26

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malformed identifier
no resolver link, observed 2026-08-16T10:18:30.071726Z

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source=pdf_text observed=2026-08-16T10:18:30.071726Z digest=sha256:ca1d4ef734a4633f3988e70056d023fcd70acd2c10be43675fa8b845186dab5d

Observation 1e91e49a-7e0b-48c9-af9d-833f332b1300 · outbound

This paper cites MRS Bulletin 38, 816–825 (2013) https://doi.org/10.1557/mrs.2013.229.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies MRS Bulletin 38, 816–825 (2013) https://doi.org/10.1557/mrs.2013.229

Reference 27

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unresolved
no resolver link, observed 2026-08-16T10:18:30.076685Z

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source=pdf_text observed=2026-08-16T10:18:30.076685Z digest=sha256:3985aa110aa19481008d76e75479c9e9c4db020c0449a0d0f66f82a0b206d3f0

Observation 3adf515d-3628-424a-8587-ff285cdf0efd · outbound

This paper cites Applied Physics Reviews 6(2) (2019) https://doi.org/10.1063/1.5089550.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Applied Physics Reviews 6(2) (2019) https://doi.org/10.1063/1.5089550

Reference 28

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source=pdf_text observed=2026-08-16T10:18:30.080443Z digest=sha256:9e6b55e55a02fc2fb0b4405bb362c2bcc5f31b7cc8408f075fe6a1b09a33da2f

Observation 7190bbe3-8fe9-412c-a6ec-b9b42d7dc794 · outbound

This paper cites Nature 609(7929), 919–924 (2022) https://doi.org/10.1038/s41586-022-05117-x.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature 609(7929), 919–924 (2022) https://doi.org/10.1038/s41586-022-05117-x

Reference 29

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no resolver link, observed 2026-08-16T10:18:30.084979Z

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source=pdf_text observed=2026-08-16T10:18:30.084979Z digest=sha256:a3aa540acb8d3f58577de78968053a7044a5ec7e21d3f7a40f1351cbf1a19d2f

Observation 5608895b-2da8-4874-ad9d-6e5160f1dd93 · outbound

This paper cites Reviews of Modern Physics 95(2) (2023) https://doi.org/10.1103/ 24 RevModPhys.95.025003.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Reviews of Modern Physics 95(2) (2023) https://doi.org/10.1103/ 24 RevModPhys.95.025003

Reference 30

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malformed identifier
no resolver link, observed 2026-08-16T10:18:30.088067Z

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source=pdf_text observed=2026-08-16T10:18:30.088067Z digest=sha256:7a0202958440e9c5df47e0027943492c637e2beedfbcf6f1dc6019aaf7413c12

Observation 2ea97688-8588-4e39-8f6d-54d0bf2a4bc3 · outbound

This paper cites Applied Physics Reviews 6(2) (2019) https://doi.org/10.1063/1.5088164.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Applied Physics Reviews 6(2) (2019) https://doi.org/10.1063/1.5088164

Reference 31

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Observation a3281cf9-e283-45fc-bf7b-07382d8829e4 · outbound

This paper cites American Institute of Physics Inc.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies American Institute of Physics Inc

Reference 32

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source=pdf_text observed=2026-08-16T10:18:30.096416Z digest=sha256:720f623d5937b266e37ae53555b3358ae1b63d36657fffb5aed1bc68e0f313ec

Observation 2a022a04-9776-4bd2-b453-c812bc316a38 · outbound

This paper cites ISSS Journal of Micro and Smart Systems 12(2), 83–104 (2023) https://doi.org/10.1007/s41683-023-00115-1.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies ISSS Journal of Micro and Smart Systems 12(2), 83–104 (2023) https://doi.org/10.1007/s41683-023-00115-1

Reference 33

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Observation e20e6943-513f-4b92-ba37-111cffedd11d · outbound

This paper cites Review of Scientific Instruments 87, 113103 (2016) https://doi.org/10.1063/1.4966970.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Review of Scientific Instruments 87, 113103 (2016) https://doi.org/10.1063/1.4966970

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Observation bbfd9e98-096d-40b7-8ae8-4a47321e7b09 · outbound

This paper cites Quantum Science and Technology 4, 014004 (2019) https://doi .org/10.1088/2058-9565/ aae0fe.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Quantum Science and Technology 4, 014004 (2019) https://doi .org/10.1088/2058-9565/ aae0fe

Reference 35

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Observation 97efe069-76ee-4b77-814a-0dd9b7d304fb · outbound

This paper cites Nature Reviews Materials 6, 892–905 (2021) https://doi.org/10.1038/s41578-021-00292-1.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Reviews Materials 6, 892–905 (2021) https://doi.org/10.1038/s41578-021-00292-1

Reference 36

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Observation 4fcd32c0-5064-4a79-8b28-df922e7db638 · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 37

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Observation 2ee5abed-3e87-4959-a8bc-3cabd25deb82 · outbound

This paper cites Nature Communications 12, 1408 (2021) https://doi.org/10.1038/s41467-021-21624-3.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Communications 12, 1408 (2021) https://doi.org/10.1038/s41467-021-21624-3

Reference 38

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Observation 8f96fbd7-dd06-4609-9e6c-4190f0a147c0 · outbound

This paper cites Applied Physics Letters 118(19), 190502 25 (2021) https://doi.org/10.1063/5.0045990 https://pubs.aip.org/aip/apl/article- pdf/doi/10.1063/5.0045990/14547612/190502 1 online.pdf.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Applied Physics Letters 118(19), 190502 25 (2021) https://doi.org/10.1063/5.0045990 https://pubs.aip.org/aip/apl/article- pdf/doi/10.1063/5.0045990/14547612/190502 1 online.pdf

Reference 39

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Observation e8ed4636-5c3e-40d9-ae52-a9ffc2ea7d16 · outbound

This paper cites IEEE Micro 41(3), 80–86 (2021) https://doi .org/10.1109/ MM.2021.3070133.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Micro 41(3), 80–86 (2021) https://doi .org/10.1109/ MM.2021.3070133

Reference 40

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Observation 3d1c2403-c057-46b4-a896-27cc7b0e036b · outbound

This paper cites In: 2021 IEEE International Roadmap for Devices and Systems Outbriefs, pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: 2021 IEEE International Roadmap for Devices and Systems Outbriefs, pp

Reference 41

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Observation 9271e757-b0d6-42ed-866d-2fc5fcf36ee5 · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 42

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Observation 4de96a7c-fe58-4241-a6e5-9b47fb391443 · outbound

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Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 43

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Observation f75069d4-ef66-4a08-a533-ded81053f32c · outbound

This paper cites John Wiley & Sons, Inc, Hoboken (2011).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies John Wiley & Sons, Inc, Hoboken (2011)

Reference 44

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Observation 8e38f57f-0116-4f99-bfc4-53646b8c3862 · outbound

This paper cites Physical Review D 26(8), 1817–1839 (1982) https://doi.org/10.1103/PhysRevD.26.1817.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review D 26(8), 1817–1839 (1982) https://doi.org/10.1103/PhysRevD.26.1817

Reference 45

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source=pdf_text observed=2026-08-16T10:18:30.322366Z digest=sha256:349a20a6c862cccfe1705b13f735db88a352eb3ae5a38f444debe7cc7db5dc19

Observation e990c87e-a070-46c5-97c0-bcf4f829f9ed · outbound

This paper cites Physical Review A 48(6) (1993).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review A 48(6) (1993)

Reference 46

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Observation 67df15db-82dd-4575-a5da-bbadb3a6b8e1 · outbound

This paper cites Cambridge University Press, ??? (2009).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Cambridge University Press, ??? (2009)

Reference 47

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Observation a206460b-3375-4d4e-8b83-4690e2d87a6c · outbound

This paper cites https: //www.entegra.co.uk/ii-products/rfsoc-rfx-8440-data-acquisition-fpga-card/.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https: //www.entegra.co.uk/ii-products/rfsoc-rfx-8440-data-acquisition-fpga-card/

Reference 48

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Observation 6a18a779-d128-4234-918f-89c3b1c36919 · outbound

This paper cites Physical Review Applied 9(3) (2018) https://doi.org/10.1103/PhysRevApplied.9.034011.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 9(3) (2018) https://doi.org/10.1103/PhysRevApplied.9.034011

Reference 49

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Observation 91fa6acd-0090-4682-9275-7753908803fe · outbound

This paper cites Review of Scientific Instruments 93(4) (2022) https://doi.org/ 10.1063/5.0076249.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Review of Scientific Instruments 93(4) (2022) https://doi.org/ 10.1063/5.0076249

Reference 50

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Observation 2a9043ec-e657-42bb-adf0-f07487a63cc8 · outbound

This paper cites https://www.quantum-machines.co/products/opx/.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://www.quantum-machines.co/products/opx/

Reference 51

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Observation 913f039d-a4f9-4ab5-94b4-4f6e31317d31 · outbound

This paper cites https://research .ibm.com/ blog/goldeneye-cryogenic-concept-system.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://research .ibm.com/ blog/goldeneye-cryogenic-concept-system

Reference 52

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Observation 3a8f35d9-3153-4cfc-9945-f2f4d910574b · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 53

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Observation 0e86d485-4c3e-4e79-8a5f-254e21a9de65 · outbound

This paper cites PRX Quantum 4(4), 40319 (2023) https://doi .org/10.1103/ PRXQuantum.4.040319.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies PRX Quantum 4(4), 40319 (2023) https://doi .org/10.1103/ PRXQuantum.4.040319

Reference 54

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Observation 7d7886b4-0b15-446b-bc27-f5fe8d2fb055 · outbound

This paper cites Physical Review Applied 7(5) (2017) https://doi.org/10.1103/PhysRevApplied.7.054020.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 7(5) (2017) https://doi.org/10.1103/PhysRevApplied.7.054020

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Observation a4c7602d-f200-4a2d-9947-fd5afeb561ca · outbound

This paper cites In: Physica Scripta T, vol.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: Physica Scripta T, vol

Reference 56

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Observation f8091427-ddd7-4464-b0d6-4593c4d6feb3 · outbound

This paper cites Nature 508(7497), 500–503 (2014) https://doi.org/10.1038/nature13171.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature 508(7497), 500–503 (2014) https://doi.org/10.1038/nature13171

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Observation 7c62ca56-3eec-4b1c-b6ca-98d70101173e · outbound

This paper cites In: 2016 IEEE Interna- tional Electron Devices Meeting (IEDM), pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: 2016 IEEE Interna- tional Electron Devices Meeting (IEDM), pp

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Observation c537cf09-b5d7-4ee4-81ff-8c4ec88edf2f · outbound

This paper cites In: Technical Digest - International Electron Devices Meeting, IEDM, vol.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: Technical Digest - International Electron Devices Meeting, IEDM, vol

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Observation 40740e7c-a9b6-460a-a32b-87472630f33a · outbound

This paper cites In: Proceedings - Design Automation Conference, vol.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: Proceedings - Design Automation Conference, vol

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Observation b75d9a42-d268-43e2-af2c-f985601f80cb · outbound

This paper cites IEEE Journal of Solid-State Circuits 53(1), 309–321 (2018) https://doi.org/10.1109/JSSC.2017.2737549.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Journal of Solid-State Circuits 53(1), 309–321 (2018) https://doi.org/10.1109/JSSC.2017.2737549

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Observation 9bcc47d3-b3f7-4af7-8dca-ef60ec4866f7 · outbound

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Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: ICECS 2022 - 29th IEEE International Conference on Electronics, Circuits and Systems, Proceedings

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Observation 6e23b039-7246-4e46-8432-95534fe1986c · outbound

This paper cites IEEE Journal of Solid-State Circuits 54(11), 3043–3060 (2019) https://doi.org/10.1109/JSSC.2019.2937234.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Journal of Solid-State Circuits 54(11), 3043–3060 (2019) https://doi.org/10.1109/JSSC.2019.2937234

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Observation 7459017e-391f-4a92-abf7-4247551cfdf4 · outbound

This paper cites In: 2019 IEEE International Symposium on Circuits and Systems (ISCAS), pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: 2019 IEEE International Symposium on Circuits and Systems (ISCAS), pp

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Observation 66e18e84-8137-4844-a1b8-c92b26261eaa · outbound

This paper cites IEEE Microwave Magazine 22(1), 60–78 (2021) https://doi.org/10.1109/MMM.2020.3023271.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Microwave Magazine 22(1), 60–78 (2021) https://doi.org/10.1109/MMM.2020.3023271

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Observation 1c28e532-5c21-4a4c-bb1d-8ddb667dd446 · outbound

This paper cites Nature Electronics 28 4(1), 64–70 (2021) https://doi.org/10.1038/s41928-020-00528-y.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Electronics 28 4(1), 64–70 (2021) https://doi.org/10.1038/s41928-020-00528-y

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Observation 4ebc0dc6-1209-44a6-a08b-e1929b9d2899 · outbound

This paper cites IEEE Transactions on Device and Materials Reliability 21(4), 620–626 (2021) https://doi .org/ 10.1109/TDMR.2021.3124417.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Transactions on Device and Materials Reliability 21(4), 620–626 (2021) https://doi .org/ 10.1109/TDMR.2021.3124417

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Observation e38e7835-e106-4622-a50c-3d2fae5438f4 · outbound

This paper cites IEEE Journal of the Electron Devices Society 6, 1007–1018 (2018) https://doi.org/10.1109/JEDS.2018.2817458.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Journal of the Electron Devices Society 6, 1007–1018 (2018) https://doi.org/10.1109/JEDS.2018.2817458

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Observation bf7d51ef-5881-44db-a191-e53def211b17 · outbound

This paper cites IEEE Journal of the Electron Devices Society 8, 897–904 (2020) https://doi .org/ 10.1109/JEDS.2020.3015265.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Journal of the Electron Devices Society 8, 897–904 (2020) https://doi .org/ 10.1109/JEDS.2020.3015265

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source=pdf_text observed=2026-08-16T10:18:30.525100Z digest=sha256:e9709920ffc19249d6e265f5553a21e309e47a05d1ff2de5597ee976e3974c19

Observation 3eff0d7b-1547-4e7e-8270-053e710dd2d9 · outbound

This paper cites Applied Physics Reviews 7(4) (2020) https://doi.org/10.1063/5.0007119.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Applied Physics Reviews 7(4) (2020) https://doi.org/10.1063/5.0007119

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source=pdf_text observed=2026-08-16T10:18:30.528541Z digest=sha256:a5db3d121e2d42f18d7ddfab791d6e2d9374531e7389fadacecc0109e6ed5470

Observation f206438c-928f-478a-946d-c5157ed5e3c5 · outbound

This paper cites IEEE Solid-State Circuits Letters (2020) https://doi.org/10.1109/ LSSC.2020.3010234.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Solid-State Circuits Letters (2020) https://doi.org/10.1109/ LSSC.2020.3010234

Reference 72

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source=pdf_text observed=2026-08-16T10:18:30.539780Z digest=sha256:b60789b98e9a73e71354c5ca13c38985971218d171d7242eb012a7f619a35152

Observation 344a00c4-5206-4b16-8b11-bdb149592cd5 · outbound

This paper cites In: 2020 IEEE Custom Inte- grated Circuits Conference (CICC), pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: 2020 IEEE Custom Inte- grated Circuits Conference (CICC), pp

Reference 73

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source=pdf_text observed=2026-08-16T10:18:30.584054Z digest=sha256:96bcc687c38edbd370c643c46136bc578e4db6a5b587f9e65968be01771a8e09

Observation e72f2ffc-de09-432d-87aa-7507b21146fb · outbound

This paper cites IEEE Journal of Solid-State Circuits 56(11), 3289–3306 (2021) https://doi.org/10.1109/JSSC.2021.3115988 29.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Journal of Solid-State Circuits 56(11), 3289–3306 (2021) https://doi.org/10.1109/JSSC.2021.3115988 29

Reference 75

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source=pdf_text observed=2026-08-16T10:18:30.709073Z digest=sha256:0dd8f22b6350f422bb82a94f01eb0855f8b886cc92e485d901beebd7980b73f9

Observation eb057d35-866a-45c6-9a60-88be8cc72a11 · outbound

This paper cites IEEE Jour- nal of Solid-State Circuits 57(11), 3258–3273 (2022) https://doi .org/10.1109/ JSSC.2022.3201775.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Jour- nal of Solid-State Circuits 57(11), 3258–3273 (2022) https://doi .org/10.1109/ JSSC.2022.3201775

Reference 76

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source=pdf_text observed=2026-08-16T10:18:30.713106Z digest=sha256:592a078fd3724ebf195d8ea4916f10545b82c55566fe974d0cce5b339b0ce297

Observation c91f68b6-93e8-4f00-a796-ce1d9514dacc · outbound

This paper cites https://arctic- kdt.eu/ (2024).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://arctic- kdt.eu/ (2024)

Reference 77

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source=pdf_text observed=2026-08-16T10:18:30.716490Z digest=sha256:a8300c2287fd65022945f319a8ca98c31bc8cceb2c80e18b6113826631509bd1

Observation 14296590-57c9-4d29-9a3e-914883488f46 · outbound

This paper cites Physical Review Applied 11(1) (2019) https://doi.org/10.1103/ PhysRevApplied.11.014009.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 11(1) (2019) https://doi.org/10.1103/ PhysRevApplied.11.014009

Reference 78

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source=pdf_text observed=2026-08-16T10:18:30.719785Z digest=sha256:c2ffb053554628ba18aff9d543017ffb14f3c00e5d1dcd6b8d4353f692e7da96

Observation 25d75b5e-1877-4535-b32b-db3558a8e6fa · outbound

This paper cites PRX Quantum 4(3) (2023) https://doi .org/10.1103/ PRXQuantum.4.030310.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies PRX Quantum 4(3) (2023) https://doi .org/10.1103/ PRXQuantum.4.030310

Reference 79

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source=pdf_text observed=2026-08-16T10:18:30.723218Z digest=sha256:9aa14f73adbc7f3e76e0c2ddb0072efceed715e02c06d7dbe71328a3b5f203ea

Observation aed96b9b-6f5a-43aa-aa11-9b4105c44992 · outbound

This paper cites IEEE Transactions on Applied Superconductivity 1(1) (1991).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Transactions on Applied Superconductivity 1(1) (1991)

Reference 80

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source=pdf_text observed=2026-08-16T10:18:30.727184Z digest=sha256:1eb3d76753e79d99fc3419706e2dcc168be6c9decda956b61f2a2902c3d850f4

Observation b604c8db-4d85-4992-a1e1-64729ce63943 · outbound

This paper cites International Journal of High Speed Electronics and Systems 11(01), 257–305 (2001) https://doi.org/10.1142/s012915640100085x.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies International Journal of High Speed Electronics and Systems 11(01), 257–305 (2001) https://doi.org/10.1142/s012915640100085x

Reference 81

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source=pdf_text observed=2026-08-16T10:18:30.730384Z digest=sha256:93e33508bed776d95f80fbbbf1247479b9d6ad44c1b34289aa8f760551861194

Observation 603f8cc5-1bbf-4637-b974-97416e60c817 · outbound

This paper cites Technical Report 2 (1999).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Technical Report 2 (1999)

Reference 82

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source=pdf_text observed=2026-08-16T10:18:30.733799Z digest=sha256:7aeb9627323b6cbd43ac9aa76f67290c19d09fb5af5fde425dee07ecb4257e03

Observation d9224054-152d-457d-b52e-7fd9cda32cfb · outbound

This paper cites IEEE Transactions on Quantum Engineering, 1–12 (2024) https://doi.org/10.1109/TQE.2024.3520805.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Transactions on Quantum Engineering, 1–12 (2024) https://doi.org/10.1109/TQE.2024.3520805

Reference 83

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source=pdf_text observed=2026-08-16T10:18:30.738374Z digest=sha256:962783fe401c69b0e03b695dced183c31ed67d017a00f3c87c6b7edb64b5fb7f

Observation 0a4787e2-510a-47fa-8742-a8283a9a56d6 · outbound

This paper cites Physical Review Applied 2(1) (2014) https://doi .org/10.1103/ PhysRevApplied.2.014007.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 2(1) (2014) https://doi .org/10.1103/ PhysRevApplied.2.014007

Reference 84

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source=pdf_text observed=2026-08-16T10:18:30.741289Z digest=sha256:4c5aac17d7c3492c1d3f6826c0b8175cbc08db6d9b8379cbbf9951b60d7471f1

Observation 5fb6a4ac-2e61-4d48-a2c9-2bd509769223 · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 85

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source=pdf_text observed=2026-08-16T10:18:30.744494Z digest=sha256:76acc995a677e7226510f1e250db1efbeebde8525b574667a64d95faba3cbb0b

Observation 79b54e7b-9495-43c9-9658-4bf660d84291 · outbound

This paper cites Physical Review Applied 12(1) (2019) https://doi.org/10.1103/PhysRevApplied.12.014044.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 12(1) (2019) https://doi.org/10.1103/PhysRevApplied.12.014044

Reference 86

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source=pdf_text observed=2026-08-16T10:18:30.747444Z digest=sha256:dc92790e41a7284e7b63872dedbf1d2e9ff3617187ca910cbe20ecd9c4265ede

Observation 96ca3077-4d3e-47ff-aa42-f6b1b145748e · outbound

This paper cites In: Proceedings - 2021 IEEE International Conference on Quantum Computing and Engineering, QCE 2021, pp.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies In: Proceedings - 2021 IEEE International Conference on Quantum Computing and Engineering, QCE 2021, pp

Reference 87

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source=pdf_text observed=2026-08-16T10:18:30.750590Z digest=sha256:c05f34c3577a179e0b0f9279817cd790470161888c4ec1f8885fa3b4e918d452

Observation 72339e4d-56e9-4ea9-9b92-983f621acdbf · outbound

This paper cites https://arxiv.org/abs/2503.09879.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://arxiv.org/abs/2503.09879

Reference 88

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source=pdf_text observed=2026-08-16T10:18:30.754542Z digest=sha256:9bb541d04aebf55d2c434af3ef8350186f46061cd4e04eb5139c5d61b382935d

Observation 06738d67-6238-4d09-94c6-4050e866f60a · outbound

This paper cites Science361(6408), 1239–1242 (2018) https://doi.org/10.1126/science.aat4625.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Science361(6408), 1239–1242 (2018) https://doi.org/10.1126/science.aat4625

Reference 89

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source=pdf_text observed=2026-08-16T10:18:30.757625Z digest=sha256:7757394ef3590edf99e7e5f6435a789d78eaf8ed587a998ff892d03b4f694167

Observation 7b346b27-c2a2-4c5b-b011-30ab56f0f576 · outbound

This paper cites IEEE Transactions on Applied Superconductivity 29(5) (2019) https://doi.org/10.1109/TASC.2019.2908884.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies IEEE Transactions on Applied Superconductivity 29(5) (2019) https://doi.org/10.1109/TASC.2019.2908884

Reference 90

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source=pdf_text observed=2026-08-16T10:18:30.769789Z digest=sha256:3218a436144fa7262189dd1c41e64c7acca3ca62c14f403e3a81e56ca7de7b0f

Observation 6d251fd3-723b-4d6b-b7e8-eb06098d67e5 · outbound

This paper cites Physical Review Applied 19(6) (2023) https://doi.org/10.1103/PhysRevApplied.19.064025.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Physical Review Applied 19(6) (2023) https://doi.org/10.1103/PhysRevApplied.19.064025

Reference 91

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source=pdf_text observed=2026-08-16T10:18:30.876760Z digest=sha256:f0cc287110b80be4df16459202214bab12d3e6d47854502905345b7d85a23843

Observation 3d98eb41-0e0b-44b3-b006-2df60e1af2bd · outbound

This paper cites PRX Quantum 3(1) (2022) https://doi.org/10.1103/PRXQuantum.3.010350.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies PRX Quantum 3(1) (2022) https://doi.org/10.1103/PRXQuantum.3.010350

Reference 92

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doi, observed 2026-08-16T10:18:31.929568Z

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correction dated 2022-03-25. Source: crossref record 10.1103/prxquantum.3.010350->10.1103/prxquantum.3.010350:correction, observed 2026-07-11T03:08:22.737929+00:00. This notice travels one citation hop only.

source=pdf_text observed=2026-08-16T10:18:31.020035Z digest=sha256:e607fa4187167f49462e1cf63ded57645b59a1ff156444728812b70af0442af8

Observation 3abca938-4bdf-4c6c-9ec3-61f274834585 · outbound

This paper cites https://doi .org/ 10.1109/IRDS54852.2021.00012.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies https://doi .org/ 10.1109/IRDS54852.2021.00012

Reference 93

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source=pdf_text observed=2026-08-16T10:18:30.308191Z digest=sha256:40efb2456381b7c4284f09f86eba4724ef4c7eae9c37eca6ef41ed51cdb93a3f

Observation 58cb5ad2-6fb0-475c-a0e1-70c9b219401e · outbound

This paper cites Quantum Science and Technology 3(2) (2018) https: //doi.org/10.1088/2058-9565/aaa3a0.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Quantum Science and Technology 3(2) (2018) https: //doi.org/10.1088/2058-9565/aaa3a0

Reference 94

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source=pdf_text observed=2026-08-16T10:18:31.023822Z digest=sha256:4539db8a51da44b7cea42ec2c186d247c4d38fdd9775661c7a5be901b60fc63b

Observation cb72bf0b-6180-45ac-8a43-fe9c914eaba5 · outbound

This paper cites 31 npj Quantum Information 10(1), 53 (2024) https://doi.org/10.1038/s41534-024- 00849-2.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies 31 npj Quantum Information 10(1), 53 (2024) https://doi.org/10.1038/s41534-024- 00849-2

Reference 95

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source=pdf_text observed=2026-08-16T10:18:31.028550Z digest=sha256:bdf4e385955d6641c0f6c62040257844d56c897159036180eab6e85b80224a2c

Observation b2638574-2de6-4b6b-89bb-efa44e1028f2 · outbound

This paper cites American Institute of Physics Inc.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies American Institute of Physics Inc

Reference 96

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source=pdf_text observed=2026-08-16T10:18:31.032212Z digest=sha256:7a07f68daddbd296f0f03912332d0fb9de53b10d133ade2430dbd898981fbfb0

Observation cb64d061-a2b5-44ca-ade6-90d2205c353a · outbound

This paper cites Optics Express 26(18), 23728 (2018) https://doi.org/10.1364/ oe.26.023728.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Optics Express 26(18), 23728 (2018) https://doi.org/10.1364/ oe.26.023728

Reference 97

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source=pdf_text observed=2026-08-16T10:18:31.035830Z digest=sha256:49cf40699aac9800a92e7d14f5ac3af256b53ac28f52178a8b7d57dac94e2791

Observation 57bbd638-39b9-4146-b480-0091af0ca5fb · outbound

This paper cites Nature Electronics 4(5), 326–332 (2021) https://doi .org/ 10.1038/s41928-021-00570-4.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature Electronics 4(5), 326–332 (2021) https://doi .org/ 10.1038/s41928-021-00570-4

Reference 98

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source=pdf_text observed=2026-08-16T10:18:31.039563Z digest=sha256:6ef0dd41ebff5f2050d039843886dc8bafe5626c7eee42f8e6e00a9388f22bb2

Observation 4571ae88-abc0-4218-b65e-8bde301a3cba · outbound

This paper cites Nature 591(7851), 575–579 (2021) https://doi.org/10.1038/s41586-021-03268-x.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Nature 591(7851), 575–579 (2021) https://doi.org/10.1038/s41586-021-03268-x

Reference 99

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source=pdf_text observed=2026-08-16T10:18:31.042832Z digest=sha256:471050780b69df7625807e79155154577618a7dcf23e45e6fd820a9d366cd682

Observation 32115f50-b8f7-4811-b525-260abb1201d8 · outbound

This paper cites Technical Report 7 (1999).

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Technical Report 7 (1999)

Reference 100

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source=pdf_text observed=2026-08-16T10:18:31.047378Z digest=sha256:fb3a821bc4c5db7a3a32e407a28b126d840368a6bf1f608f113bb59ee42a8639

Observation 0f154569-af10-475c-845f-eaed8c2e7450 · outbound

This paper cites Scientific Reports 10(1) (2020) https://doi.org/10.1038/s41598-020-65971-5.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Scientific Reports 10(1) (2020) https://doi.org/10.1038/s41598-020-65971-5

Reference 101

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source=pdf_text observed=2026-08-16T10:18:31.051049Z digest=sha256:7d416b816a60f15e8d79f1f850b81e76fca4275a8f3e15e0b5c9a9e8fb87834f

Observation cca04d45-fa32-44ee-9c8f-00fca24555f2 · outbound

This paper cites an unresolved cited work.

Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies Unresolved cited work

Reference 102

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source=pdf_text observed=2026-08-16T10:18:31.056299Z digest=sha256:79e541af268447bc30f8b3cc1dc7def54e468b7d3fe23012142d1e052d67382f

Pith citing papers

Observation 7622819f-c644-483b-9637-be9c2dff10e6 · inbound

Circuit simulation of readout process toward large-scale superconducting quantum circuits cites this paper.

Circuit simulation of readout process toward large-scale superconducting quantum circuits Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies

Reference 3

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source=arxiv_source observed=2026-08-15T17:57:46.083569Z digest=sha256:00e8595b1186f01e90ce2bfe26c89433731270b675b439b9eab68ef9c01dd556

Observation b160497c-05f9-4302-915a-6063b82baf6f · inbound

A Cryogenic Dielectric Antenna for Wireless Sensing and Interfacing Outside the 10 K Environment cites this paper.

A Cryogenic Dielectric Antenna for Wireless Sensing and Interfacing Outside the 10 K Environment Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies

Reference 13

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source=pdf_text observed=2026-08-05T00:02:43.247239Z digest=sha256:e15f6d5461dc6963fae582abe4adb7b4ce0756e684c01a2a84fea637d556dc87

Observation bfbf308e-733c-4b03-8278-8f2ec88a565b · inbound

Constraint-Optimal Driven Allocation for Scalable QEC Decoder Scheduling cites this paper.

Constraint-Optimal Driven Allocation for Scalable QEC Decoder Scheduling Classical Interfaces for Controlling Cryogenic Quantum Computing Technologies

Reference 68

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arxiv_id, observed 2026-05-17T02:51:27.696989Z

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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.

source=pdf_text observed=2026-05-17T02:50:49.289179Z digest=sha256:482a55eba17f8f0b72d0e42ea6f6dacd2e7cdb93fc5976ee3293263949aa361c