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Paper Citation Record · LEDGER

Detecting entanglement from few partial transpose moments and their decay via weight enumerators

As of 6 August 2026, this Paper Citation Record lists 99 of 99 outbound references and 4 inbound Pith citation observations for arXiv:2604.12576.

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

pith.paper-citation-record.v1
2604.12576 v2

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measured 99 of 99 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-07-12T21:16:23.456229Z

measured 103 of 103 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-06T06:34:29.942622+00:00

measured 4 of 4 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-06-29T04:58:34.878503Z

measured 0 of 1 external citation measurements

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Source: pith, observed 2026-07-04T20:40:08.718229Z

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Outbound references

Observation dc68258d-9f70-4484-b8c3-2425d1a0b9c4 · outbound

This paper cites Aruteet al., Quantum supremacy using a programmable su- perconducting processor, Nature574, 505 (2019).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Aruteet al., Quantum supremacy using a programmable su- perconducting processor, Nature574, 505 (2019)

Reference 1

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Observation a037946d-4108-4356-95ba-6fab75562573 · outbound

This paper cites Kimet al., Evidence for the utility of quantum computing before fault tolerance, Nature618, 500 (2023).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Kimet al., Evidence for the utility of quantum computing before fault tolerance, Nature618, 500 (2023)

Reference 2

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Observation 8edee5fb-1ce4-45c3-b55d-d0a47a8de5a5 · outbound

This paper cites Bluvsteinet al., Logical quantum processor based on recon- figurable atom arrays, Nature626, 58 (2024).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Bluvsteinet al., Logical quantum processor based on recon- figurable atom arrays, Nature626, 58 (2024)

Reference 3

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Observation 00ad2ecb-0c0a-47ce-a719-99de6d713904 · outbound

This paper cites Acharyaet al., Quantum error correction below the surface code threshold, Nature638, 920 (2025).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Acharyaet al., Quantum error correction below the surface code threshold, Nature638, 920 (2025)

Reference 4

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Observation e09e466b-4bef-46c3-9b69-789ad9cda1f5 · outbound

This paper cites Mind the gaps: The fraught road to quantum advantage.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Mind the gaps: The fraught road to quantum advantage

Reference 5

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Observation 8ac2b94a-6f78-46e5-bc6e-650b563dfb91 · outbound

This paper cites Eisert, D.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Eisert, D

Reference 6

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Observation 4ffc8175-21fd-4ea6-8964-0afe7dfc4942 · outbound

This paper cites Kliesch and I.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Kliesch and I

Reference 7

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Observation dab615ce-71b1-41cb-bc88-e0b24a6a6f10 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 8

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Observation fc6e68bc-6a9b-4f4e-ae8b-b9a14ad03c52 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 9

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Observation 5fa724bc-16d1-40d0-a0ee-92174cfd341e · outbound

This paper cites Aspect, P.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Aspect, P

Reference 10

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Observation 3ea20470-932c-489f-93cd-ad5ef03cc361 · outbound

This paper cites Weihset al., Violation of Bell’s Inequality under strict Ein- stein locality conditions, Phys.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Weihset al., Violation of Bell’s Inequality under strict Ein- stein locality conditions, Phys

Reference 11

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Observation dd3ba458-2936-4bf9-955e-18bac811216f · outbound

This paper cites Hensenet al., Loophole-free Bell inequality violation us- ing electron spins separated by 1.3 kilometres, Nature526, 682 (2015).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Hensenet al., Loophole-free Bell inequality violation us- ing electron spins separated by 1.3 kilometres, Nature526, 682 (2015)

Reference 12

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Observation c3e0cbb9-e19a-4ef3-a5be-1a1fb64dfb20 · outbound

This paper cites Storzet al., Loophole-free Bell inequality violation with su- perconducting circuits, Nature617, 265 (2023).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Storzet al., Loophole-free Bell inequality violation with su- perconducting circuits, Nature617, 265 (2023)

Reference 13

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Observation 2686f5b7-b376-4efb-8aa1-9da44bacf6fa · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 14

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Observation 33dc6d5e-b43d-4c17-9a84-c7e82e3afb7b · outbound

This paper cites Horodecki, P.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Horodecki, P

Reference 15

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Observation 57471b0c-eff8-40d3-930c-2dfc1a4d6377 · outbound

This paper cites Terhal, Detecting quantum entanglement, J.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Terhal, Detecting quantum entanglement, J

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Observation 3e94b27a-e4ca-450f-b08a-212278e5852b · outbound

This paper cites G ¨uhneet al., Detection of entanglement with few local mea- surements, Phys.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators G ¨uhneet al., Detection of entanglement with few local mea- surements, Phys

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Observation 9ae6dfb6-d688-4861-89ed-9d8d19f4dbad · outbound

This paper cites G ¨uhne and G.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators G ¨uhne and G

Reference 18

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Observation 35784ecc-b4b4-4506-b5fc-1ed540f33654 · outbound

This paper cites Hangleiter, M.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Hangleiter, M

Reference 19

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Observation 6d7a6dbc-2832-44ce-a366-071424631adc · outbound

This paper cites Bourennaneet al., Experimental Detection of Multipartite Entanglement using Witness Operators, Phys.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Bourennaneet al., Experimental Detection of Multipartite Entanglement using Witness Operators, Phys

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Observation 2065edb3-7456-428e-bcb3-38f1400defeb · outbound

This paper cites Leibfriedet al., Creation of a six-atom Schr ¨odinger cat state, Nature438, 639 (2005).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Leibfriedet al., Creation of a six-atom Schr ¨odinger cat state, Nature438, 639 (2005)

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Observation bcf380c4-a031-4973-bbe1-278a6ceed2ba · outbound

This paper cites Huanget al., Experimental generation of an eight- photon Greenberger–Horne–Zeilinger state, Nat.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Huanget al., Experimental generation of an eight- photon Greenberger–Horne–Zeilinger state, Nat

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Observation 8f4706fc-4f16-4df7-a2a8-2cf1d0d0b907 · outbound

This paper cites Zhanget al., Experimental Greenberger-Horne-Zeilinger- type six-photon quantum nonlocality, Phys.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Zhanget al., Experimental Greenberger-Horne-Zeilinger- type six-photon quantum nonlocality, Phys

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Observation d48e5e06-e566-47c1-9e12-214e7407ad6f · outbound

This paper cites Wanget al., 18-Qubit entanglement with six photons’ three degrees of freedom, Phys.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Wanget al., 18-Qubit entanglement with six photons’ three degrees of freedom, Phys

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Observation 20004f39-75b2-454d-a79d-cf89bbed8cef · outbound

This paper cites Omranet al., Generation and manipulation of Schr ¨odinger cat states in Rydberg atom arrays, Science365, 570 (2019).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Omranet al., Generation and manipulation of Schr ¨odinger cat states in Rydberg atom arrays, Science365, 570 (2019)

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Observation cbf7861e-56af-4ecd-a47b-8288397fad0d · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation 5c081888-321f-4ece-903e-302745ecef0f · outbound

This paper cites Thomas, L.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Thomas, L

Reference 27

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Observation a7d12962-ac7a-43e0-882f-595e927ce9cc · outbound

This paper cites Caoet al., Generation of genuine entanglement up to 51 su- perconducting qubits, Nature619, 738 (2023).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Caoet al., Generation of genuine entanglement up to 51 su- perconducting qubits, Nature619, 738 (2023)

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Observation db3f8b0c-f227-4595-908e-4ae98ecb0420 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation b8c00ae5-82cc-4437-81e5-09dc34d69c46 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation 39daf74e-38a9-4b27-a789-2cbcf1488a13 · outbound

This paper cites Javadi-Abhariet al., Big cats: entanglement in 120 qubits and beyond (2025), arXiv:2510.09520.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Javadi-Abhariet al., Big cats: entanglement in 120 qubits and beyond (2025), arXiv:2510.09520

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation a9b71295-5c51-41bb-95d9-b5277e47fdd9 · outbound

This paper cites Islamet al., Measuring entanglement entropy in a quantum many-body system, Nature528, 77 (2015).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Islamet al., Measuring entanglement entropy in a quantum many-body system, Nature528, 77 (2015)

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Observation 887e0a07-c077-4654-980f-319c0baa4add · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation ac34bede-1bd5-4bd8-baee-e592b49412fc · outbound

This paper cites Bluvsteinet al., A quantum processor based on coherent 13 transport of entangled atom arrays, Nature604, 451 (2022).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Bluvsteinet al., A quantum processor based on coherent 13 transport of entangled atom arrays, Nature604, 451 (2022)

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Observation a9bc406f-789a-46ef-9e60-6293eed18edf · outbound

This paper cites Experimental measurement and a physical interpretation of quantum shadow enumerators.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Experimental measurement and a physical interpretation of quantum shadow enumerators

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Observation 751acb08-4f14-4e01-98d3-5dad43f765f5 · outbound

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Observation f448d90e-3ce7-41f7-beb1-e9c42990a075 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Mintert, M

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Observation 6280c51d-dea1-4b0c-a2e3-619ebced661a · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Mintert and A

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Observation cdcaaabb-a36e-453c-b14c-ea6322487b61 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Aolita, A

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Observation 34824d1d-0b0c-40b9-a5aa-00aaf94e516c · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Horodecki, P

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Rains, A semidefinite program for distillable entanglement, IEEE Trans

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Observation e491f534-3f53-492d-a360-f92b84d300f1 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation 4eec827a-acf2-4474-8a70-6c6f519990c7 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:89b4283da159fc6e1aade83d3db6ca9ae2b12d38c1091ccb8bb9d499514b7cd0

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Observation 1ce01395-a5ab-4102-8bb3-9e83a4d6fc64 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:16bc9a7d153505e3907cd8c206b59884c685b2c6990ee1c9b47c4272b3d4d942

Observation e3d587b3-5229-4e01-97da-55a32bf3f275 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Liuet al., Detecting Entanglement in Quantum Many- Body Systems via Permutation Moments, Phys

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Observation c9465563-2053-4baf-8136-f32b03ea5ebc · outbound

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Observation 9e7ac921-c23d-4c1d-871c-caf56ff9a6d3 · outbound

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Observation 5485a13d-5f3b-4839-91b8-ad53b51779ba · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Quantifying mixed-state entanglement via partial transpose and realignment moments

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Observation 85c4fda9-8530-46fb-ad18-9decbea0400f · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators A Closed Form for Moment-Based Entanglement Tests Associated to the PPT Criterion

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Observation 5773c61b-2c7e-4727-a47b-d5e6b039d52e · outbound

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:fa8d381521acac573cfb9b3e84cf2b1fdf92cc6c57f2b18ade7640145751efe1

Observation f342af4c-b3d5-4fe4-a0e0-e32cc51b5869 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:f54e5a29618eacc7febe36e6a6c73d7199182d0c318abf3856b91ea3c909431d

Observation 686d531f-80a2-4c5a-9fb8-79e899c13df8 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation 3aabc2ae-72c0-48c5-b0ff-552a42cf0f5e · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:29c11daad5b1ffb35f358c699d42e3c1017be400f391ef3f67386e52b206d794

Observation 58ef098f-9087-4a27-8730-8661ced89abe · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Subas ¸ı, L

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Observation 6ffd9dc1-2da0-4c74-9695-f462d8d8a500 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Oszmaniec, D

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Observation 7805aa94-e482-4b4f-b5d5-980871dd3a2b · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation e52b8c92-1994-49ab-83e3-e21fd2a48fcd · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

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Observation 1ba75410-d3a0-4d7f-8acf-a624a919aee5 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Bhatia,Matrix Analysis, 1st ed., Grad

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Observation c7957563-fabd-4814-9b07-f835801a7175 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Eisert, F

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Observation e97fd365-77bc-4095-808f-7025f73a66e1 · outbound

This paper cites an unresolved cited work.

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Observation d7b53ec9-1668-491d-95a0-c2ebfdcd52bb · outbound

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Observation 3e3b42e1-be17-4ad4-9fb5-03e7236319af · outbound

This paper cites Entanglement in quantum information theory.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Entanglement in quantum information theory

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Observation 6424a3db-43ff-4e8b-b2db-f62a41e21e16 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Vidal and R

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Observation f8682295-c560-4258-9d19-ddc36778c605 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Horodecki, P

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Observation bc6a15b3-b541-4497-9ccd-06c510c2da03 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Chen and L

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Observation a238d8a0-8399-4b05-a3a2-e07d6d1b2c09 · outbound

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Observation ef237fd1-4bcb-49f1-81f8-b6b27f750afb · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Entanglement in the stabilizer formalism

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Observation 1204753a-b86e-4736-856c-59ddd802c135 · outbound

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Observation 3a8a4c41-beab-4f1a-830c-90dfd7a58b52 · outbound

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Observation d08bf3fb-7bf4-4c14-927e-ee0102bf7d80 · outbound

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Observation 28d962d9-ff90-427f-90d5-c2f47f379e66 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Flammia and Y .-K

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Observation 39c7ea1f-a6d9-420e-ac05-fb414c602cc9 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Simplest fidelity-estimation method for graph states with depolarizing noise

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Observation 3cdbab34-9843-4a0a-9fdc-dcb8ab0d4400 · outbound

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Detecting entanglement from few partial transpose moments and their decay via weight enumerators Shor and R

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:c51dabfc6f55f68ab8ba2de075bf6d4f5887c5edb1b4f4a7a5dbb1e0285ce7c4

Observation f3d0d01f-de23-4a61-afd9-9952104d08b4 · outbound

This paper cites Aschauer, J.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Aschauer, J

Reference 79

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:3c415208b1f2bab7c7639d4551243ed4d1a137f69a19132655d6cac18fc941f8

Observation 1dbfd5d8-855b-4830-b1f3-012e549c7964 · outbound

This paper cites Rains, Quantum weight enumerators, IEEE Trans.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Rains, Quantum weight enumerators, IEEE Trans

Reference 80

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:3ce30a1eb450f1f114cefe4325f3460b12ea379f163c32d7e0274cce5684a061

Observation 744f22d4-0a5b-4492-8ff4-8b8a9d8cf495 · outbound

This paper cites Milleret al., Shor–Laflamme distributions of graph states and noise robustness of entanglement, J.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Milleret al., Shor–Laflamme distributions of graph states and noise robustness of entanglement, J

Reference 81

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:c2e7b8b08be9da38e68f87239454194363201314b25352996c806dbefb35742f

Observation e625e0c0-f2b4-41df-99ad-04f661f15761 · outbound

This paper cites Miller and D.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Miller and D

Reference 82

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:7901868270198cf103dc2efae3b65ac5f0eeaa0946781e7d74d272820fde562d

Observation f0fd387c-b196-4511-b245-7d19cabc69b7 · outbound

This paper cites Rains, Polynomial invariants of quantum codes, IEEE Trans.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Rains, Polynomial invariants of quantum codes, IEEE Trans

Reference 83

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:f7b65146be000ea2957c8ccdf4afcbb7861d0c9b486fd4d884f1a9228f9dd2f6

Observation cf44455f-2eb0-4e53-a735-a271397aae36 · outbound

This paper cites Grassl, M.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Grassl, M

Reference 84

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:0e7cd858efe6b2656bc9530eb689c4c3bf12e84d4f92923e8abbcc3606bab912

Observation 3bacdeb6-6b85-4b86-ad89-8ede3e5b5204 · outbound

This paper cites Terras,Fourier Analysis on Finite Groups and Applications (CUP, 1999).

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Terras,Fourier Analysis on Finite Groups and Applications (CUP, 1999)

Reference 85

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:fbe992b861f6b134cdc42996df9d8d8cc16a8b0dd9f3ce1ebb4083b74b65c9a6

Observation 81f39c4d-8ec0-4868-be6c-991a67fbbff2 · outbound

This paper cites Laflamme, C.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Laflamme, C

Reference 86

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:44ef03d39e31c271cf2c18bc222ea225536a6d694bf93dab876befe4e6d0a89d

Observation d5ab3c71-6533-4d52-bbc4-13a2d5aabc37 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 87

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:6faa07efcbcc9886a0ac7e3f23eb60dba150ab35096f15dff39067be706da121

Observation e99094d5-8fdb-4c61-8f00-47220f40ca9f · outbound

This paper cites Cao and B.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Cao and B

Reference 88

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:186035648e2a2aedc1d5318a75409ce24321473c9023b5e13fbf35773e2ed382

Observation 9f0956ca-1bd7-4a0b-be1d-4dc1eae3eccc · outbound

This paper cites Braccia, P.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Braccia, P

Reference 89

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:93da10261bbc845dbb5d246941737ca9f06acd58114c88218bc3ed3f9cca5df8

Observation b6e0f2a4-9ffe-483c-b026-e6587ee33e52 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 90

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:fbe7b65afa9bda802e512560757c67ed20c864b7bc8952b8a055f065430e2a82

Observation 24e38031-dcdf-409e-a4f9-0834c62d4534 · outbound

This paper cites Sector length distributions of recursively definable graph states through analytic combinatorics.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Sector length distributions of recursively definable graph states through analytic combinatorics

Reference 91

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:0e692176c8fe91328abf4d951696dd02de5e043eeb2d107db297d79abdbc9ded

Observation c7c81662-49fa-476c-b4a5-de37bb9d0027 · outbound

This paper cites Black-white polynomials of graphs and generating functions.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Black-white polynomials of graphs and generating functions

Reference 92

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:c8e5d929a619133e06ac79eb41cd36e0f5b6ad11648ba92f8fcf2731fcbfa10b

Observation f965615c-5504-49bf-9660-f626d92ed787 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 93

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:29c4a94f02149bd4761799dbc4912702ae5d8867e4102f18606b09c0a89cf0ad

Observation aa6bea3e-7a1c-4170-99c3-a14214a8fc36 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 94

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:7baa860c1b124b05cfd967fe0d92173a149403e12bbb2fcfb29cce045ce8f55f

Observation 1367293d-2d75-4fa2-8e6a-a0257dce06d1 · outbound

This paper cites Huber and S.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Huber and S

Reference 95

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:d3f8d90e9dfeffdef7ee29b52a0137a7527ebea8e63f731c4e9a23e82bca4a56

Observation 12b8bd5a-0b32-4d8a-902a-f0b223be01ae · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 96

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:4dbf09db2c347ef66b22c7fb220d4d3af478787b9ba18186e3b952d07d96001d

Observation 71f74f52-895e-4f10-a4c2-2c3670637df1 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 97

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:79160f787006dcb7ff92174d69853ca77fd5f4909a165b3ecd4422366ca9ba41

Observation 282cdae7-6996-43ef-8767-72893a5098a8 · outbound

This paper cites Wyderka and O.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Wyderka and O

Reference 98

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:a5dc81b0813491318d070f92969bca4aeca0295946bfbe5971dadac6ffa4f302

Observation f19c66f7-5393-4679-b5a8-b35a254905a9 · outbound

This paper cites an unresolved cited work.

Detecting entanglement from few partial transpose moments and their decay via weight enumerators Unresolved cited work

Reference 99

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source=pdf_text observed=2026-07-12T21:16:23.456229Z digest=sha256:701cd4506e7e9c408fd0daef4d47d3fc2bcc9be985aa8655be325ee5028c3c18

Pith citing papers

Observation 19596423-3475-4ce1-9167-21ac46d218d5 · inbound

Online Estimation of Partial Transpose Moments via Fast Classical Updates cites this paper.

Online Estimation of Partial Transpose Moments via Fast Classical Updates Detecting entanglement from few partial transpose moments and their decay via weight enumerators

Reference 8

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local_arxiv, observed 2026-05-11T16:51:08.667338Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-05-09T14:41:03.555253Z digest=sha256:23ea4d49e1b1bb411c6537fe19a87adcd0904bcfeec1e99e5ae194ef51b45b67

Observation f56cdb2c-6072-4b8e-8a93-4bc385eabe6a · inbound

Exact noise characterization of entanglement distribution in star networks cites this paper.

Exact noise characterization of entanglement distribution in star networks Detecting entanglement from few partial transpose moments and their decay via weight enumerators

Reference 37

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local_arxiv, observed 2026-07-02T18:57:16.549060Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-27T21:49:52.276175Z digest=sha256:153eccd2504170577c96b2def899d076134e488dcfffbefd9a412d93006fbcd6

Observation 49a45718-dc83-4395-bd49-8128e7724762 · inbound

Simultaneous Estimation of Partial-Transpose Moments with Active Memory Independent of the Moment Order cites this paper.

Simultaneous Estimation of Partial-Transpose Moments with Active Memory Independent of the Moment Order Detecting entanglement from few partial transpose moments and their decay via weight enumerators

Reference 35

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local_arxiv, observed 2026-06-29T19:03:52.140756Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-29T04:58:34.878503Z digest=sha256:a82594545719ce7bc07bdb7221c8756798c2ee945227fd6747fa1e96905a36ba

Observation 97826471-be8c-4257-b4d8-c446feb4a434 · inbound

Operational detection of Wigner negativity in arbitrary quantum states from few copies cites this paper.

Operational detection of Wigner negativity in arbitrary quantum states from few copies Detecting entanglement from few partial transpose moments and their decay via weight enumerators

Reference 56

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local_arxiv, observed 2026-07-04T20:40:08.719594Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-25T19:43:57.514599Z digest=sha256:058a46d8999d29a5a7a4f5754d9bba614e1995e0607c546f5b4eec3af0052a11