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Paper Citation Record · LEDGER

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation

As of 6 August 2026, this Paper Citation Record lists 35 of 35 outbound references and 0 inbound Pith citation observations for arXiv:2606.05397.

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

pith.paper-citation-record.v1
2606.05397 v1

Coverage vector

measured 35 of 35 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-06-28T05:30:48.169510Z

measured 35 of 35 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-05T06:32:48.257954+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

35 of 35 outbound references displayed

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  • verified fuzzy0
  • unresolved27
  • parse uncertain0
  • malformed identifier0
  • metadata mismatch4

External citation measurements

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Outbound references

Observation a74c1811-7233-4121-8dac-56041e27bd9d · outbound

This paper cites Efficient synthesis of probabilistic quantum circuits with fallback.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Efficient synthesis of probabilistic quantum circuits with fallback

Reference 1

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Observation d3314a45-97b7-4206-a37c-364e3f1882fd · outbound

This paper cites Efficient synthesis of universal Repeat-Until-Success circuits.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Efficient synthesis of universal Repeat-Until-Success circuits

Reference 2

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:35c04d6c320e638d20d2aa9ad6edb74bed67eb01df271110aafb0b5cd1aeacf5

Observation 8f0dc3c4-31cb-4887-9390-a02274be71ed · outbound

This paper cites Campbell and Mark Howard.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Campbell and Mark Howard

Reference 3

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:38d9608d03cf9d5f6e9ac8c1067263785cbd0ba1928d24d51660996dd85b80db

Observation 93b7cd83-4f1a-49fc-b064-d9b92d823bbd · outbound

This paper cites Cerezo, Guillaume Verdon, Hsin-Yuan Huang, Lukasz Cincio, and Patrick J.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Cerezo, Guillaume Verdon, Hsin-Yuan Huang, Lukasz Cincio, and Patrick J

Reference 4

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Observation 8d16c483-dc7d-4b85-b934-376c8e7be438 · outbound

This paper cites an unresolved cited work.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Unresolved cited work

Reference 5

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Observation 43ac1cc5-df3b-4248-919d-cf78797012c7 · outbound

This paper cites an unresolved cited work.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Unresolved cited work

Reference 6

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:a44c5415c9f6310389dd1ab3fa481b8dc95afa9a8a1b60b56f42218d70071a3c

Observation 078749ca-2f14-493c-81ff-565787d0ba9c · outbound

This paper cites Faster quantum chemistry simulation on fault-tolerant quantum com- puters.New Journal of Physics, 14(11):115023, nov 2012.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Faster quantum chemistry simulation on fault-tolerant quantum com- puters.New Journal of Physics, 14(11):115023, nov 2012

Reference 7

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:523e45dffc217c54af52e67dc68f3296c40cc0f95a5d2d753a8d93d72b48ea35

Observation a024ea8d-f1ff-4aa1-9d57-6fb04745030c · outbound

This paper cites PhD thesis, Massachusetts Institute of Technology, 02 2023.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation PhD thesis, Massachusetts Institute of Technology, 02 2023

Reference 8

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:d222d27955232613f22f928521d8410b075b36e125963b4de149f01f354fea57

Observation d9ca2b98-e103-42e0-997a-66963276a88e · outbound

This paper cites Reducing the quantum- computing overhead with complex gate distillation.Physical Review A, 91(4), April 2015.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Reducing the quantum- computing overhead with complex gate distillation.Physical Review A, 91(4), April 2015

Reference 9

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:990328eef154d9c593e766f5da556e2150d685e08f066147adf199acf36462fe

Observation 6e261f01-c43d-47e9-bda4-7ba231176c51 · outbound

This paper cites Restrictions on transversal encoded quantum gate sets.Phys.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Restrictions on transversal encoded quantum gate sets.Phys

Reference 10

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:7f01d55f5bc75af193fde6aec9c330f700bf7c935358e6f07396a40dcf367571

Observation c7f6d084-e7f8-49b2-a1be-029e328775a4 · outbound

This paper cites A Quantum Approximate Optimization Algorithm.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation A Quantum Approximate Optimization Algorithm

Reference 11

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:0441c1c273bea395e2c1986765e8ce6b3b646ff90ac551dfe06188630d95df79

Observation d73d87e2-159e-4535-9cfd-dd917ab44f15 · outbound

This paper cites Fowler, Matteo Mariantoni, John M.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Fowler, Matteo Mariantoni, John M

Reference 12

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:a88a1ac3b336e584273105c7a87a5de251fd6d546c4ab0b4e6ed9ab8e00d5fb0

Observation 56f7a3dd-56f5-4c11-a29f-23297f5395b3 · outbound

This paper cites Halving the cost of quantum addition.Quantum, 2:74, June 2018.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Halving the cost of quantum addition.Quantum, 2:74, June 2018

Reference 13

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:07d7c8d78349679cf6be67b8935d24b0053a6495a383e943c164715304e0ebb5

Observation 14bb85f8-328d-4f07-b40f-fd32140bc55f · outbound

This paper cites Magic state cultivation: growing t states as cheap as cnot gates, 2024.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Magic state cultivation: growing t states as cheap as cnot gates, 2024

Reference 14

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:066532d586f81c8e24a38b98d0e7f03f1684a9967ed966087873a5014cc29448

Observation c7596033-c097-4358-85f1-9c4d54f7c151 · outbound

This paper cites Distance measures to compare real and ideal quantum processes.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Distance measures to compare real and ideal quantum processes

Reference 15

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:c322df9a48b069e5d238408753eb32754d975bc60a806fefcfd78fac91b2ef9f

Observation 5c9894f7-5d54-405b-85db-e3bc1d81f79e · outbound

This paper cites an unresolved cited work.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Unresolved cited work

Reference 16

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:4fcefc9f85576c690f0af564afa596e083c42883153997a17f93c1c5bb20de14

Observation a2de066d-d563-420f-b03c-c07299062381 · outbound

This paper cites Scheduling lattice surgery with magic state cultivation, 2026.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Scheduling lattice surgery with magic state cultivation, 2026

Reference 17

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:8cbae6e5e840fc873080f0215d6d18a2ffc961445d68173f1566260485ff11d0

Observation 78a27b8d-cbb6-4a78-be4a-803c758b6c85 · outbound

This paper cites Fowler, Simon Devitt, and Rodney Van Meter.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Fowler, Simon Devitt, and Rodney Van Meter

Reference 18

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:b3d26996c5fb3b77a8a57715ed469754e0fb12a987c5b8d17352fe7e1c0b1aed

Observation 1112b85e-7b20-44e5-b85b-54310e9bd81d · outbound

This paper cites Wood, Jake Lishman, Julien Gacon, Simon Martiel, Paul D.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Wood, Jake Lishman, Julien Gacon, Simon Martiel, Paul D

Reference 19

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:1d23e33b7b7c2a279932bc537055eb166bd1a8d9df6fead02014c2a24f996359

Observation 4122a619-b802-4fa5-94da-ebdf5b708758 · outbound

This paper cites Kitaev, Alexander H.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Kitaev, Alexander H

Reference 20

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:0e8a734391576199b5014cf7389a3348457f0e12934f51f3990fbe6b66879b18

Observation 86487fcc-71c9-4feb-983c-3b111c9c9e8d · outbound

This paper cites Complex instruction set computing architecture for performing accurate quantum $Z$ rotations with less magic.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Complex instruction set computing architecture for performing accurate quantum $Z$ rotations with less magic

Reference 21

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:5e3b158891f578b54341a77347a082dd4a689bbf2fcafce3da7c6f17a4f7dc5c

Observation c5c2d711-51a2-4cc0-9e15-92e897504b0d · outbound

This paper cites A game of surface codes: Large-scale quantum com- puting with lattice surgery.Quantum, 3:128, March 2019.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation A game of surface codes: Large-scale quantum com- puting with lattice surgery.Quantum, 3:128, March 2019

Reference 22

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:f487e6a061eb0744d43cbe25e9a9ecae44d02288980ba880d920ce2a1cd8a8c9

Observation ad3e24ee-00c3-4456-868f-4f70e1734e65 · outbound

This paper cites Synthetiq: Fast and versatile quantum circuit synthesis.Proc.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Synthetiq: Fast and versatile quantum circuit synthesis.Proc

Reference 23

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:2a2591ef3d28a1e294d76832b7a345d5ec6e0904dfef1da180440931c6bb514e

Observation f6ffa45a-aa52-4b6a-9699-5dbd38aea609 · outbound

This paper cites Rahman, Randy Lewis, Emanuele Mendicelli, and Sarah Powell.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Rahman, Randy Lewis, Emanuele Mendicelli, and Sarah Powell

Reference 24

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:ee21602d210be86693d09230c2191b87659cb17970f98d476c90aca7621b1474

Observation fd908a36-00a1-43af-b488-1266964704ab · outbound

This paper cites Self-mitigating Trotter circuits for SU(2) lattice gauge theory on a quantum computer.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Self-mitigating Trotter circuits for SU(2) lattice gauge theory on a quantum computer

Reference 25

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:245f883283eadafa62c4fd06bda20de04bd0130428158be9de361deedb2cdafd

Observation cd5e7241-a011-4e44-9616-226a38691dbc · outbound

This paper cites Ross and Peter Selinger.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Ross and Peter Selinger

Reference 26

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:24da4fcdab00cc614ac594ecb30e27055b704428bbc5ec1fd7d9f3b4ea4d4b0f

Observation 7a14765e-11c9-41e9-932d-65329557e7e0 · outbound

This paper cites Smith, Shraddha Singh, and Shruti Puri.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Smith, Shraddha Singh, and Shruti Puri

Reference 27

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:9a37f61e30d896017dc5a6bae100adbc3beba41c7428dfb1b33385ac2ab36f5f

Observation 529ef523-5243-41c7-97f8-ef6f3b9711e7 · outbound

This paper cites Sanders, Dominic W.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Sanders, Dominic W

Reference 28

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Observation 42298b90-5a78-4986-b518-95bdd3802d89 · outbound

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Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Unresolved cited work

Reference 29

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:27a691fba8daa0f7c5713012afa170e7ded01dd97ac8682b0f223efb9f677815

Observation 908ba835-ae46-4cf0-97ec-614bdcdc92e4 · outbound

This paper cites Multi-qubit lattice surgery scheduling.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Multi-qubit lattice surgery scheduling

Reference 30

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:cd8b05457b696010275f5cf717fabe36e655c01d8f1aba3f6916a0a951692240

Observation 69e60ebe-119f-4bd5-87db-bfbc062c8d54 · outbound

This paper cites t$|$ket$\rangle$ : A Retargetable Compiler for NISQ Devices.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation t$|$ket$\rangle$ : A Retargetable Compiler for NISQ Devices

Reference 31

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arxiv_id, observed 2026-07-02T09:26:51.493123Z

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:53fbba63b174895fd9e9a6d32bf68109acb3ea46f7c98681af398371085b08a7

Observation 93e65fee-269e-4a93-b9c4-4492ba941bdc · outbound

This paper cites Multiple particle interference and quantum error correction.Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 452, 01 1996.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Multiple particle interference and quantum error correction.Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 452, 01 1996

Reference 32

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:09d286d3c8e88959b44251391097cd65e3a0141ff148cf3c3db6c27e63184d2f

Observation 7888be0d-8aff-4b75-a107-bd327b19368f · outbound

This paper cites Efficient magic state cultivation on the surface code, 2025.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Efficient magic state cultivation on the surface code, 2025

Reference 33

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:89ecda4bdda96a2253acce3e0645f6988cf6896b4ab6de55cc63c5ed1ad3d14e

Observation a66d0f84-c8a9-4bf0-8004-9d7dcbd774b1 · outbound

This paper cites High-precision multi-qubit clifford+t synthesis by uni- tary diagonalization.Electronic Proceedings in Theoretical Computer Science, 426:215–230, August 2025.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation High-precision multi-qubit clifford+t synthesis by uni- tary diagonalization.Electronic Proceedings in Theoretical Computer Science, 426:215–230, August 2025

Reference 34

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source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:6e2497f02dc84c28e715043d534457ebdf6509cb8dedf904ee15a6b940e1f4c9

Observation 5a3cc3f7-cdc0-45ba-b163-d67ac92db460 · outbound

This paper cites Younis, C.

Multi-Qubit Dyadic Phase Fixing for Fault-Tolerant Quantum Compilation Younis, C

Reference 35

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doi, observed 2026-06-28T05:31:39.749029Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

source=pdf_text observed=2026-06-28T05:30:48.169510Z digest=sha256:7544720ddb70d9300ef5c63c2e5bbb99230269d7126ad837d6d3d8333db622a6

Pith citing papers

No inbound Pith citation observations are available.