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Paper Citation Record · LEDGER

Medusa: Detecting and Removing Failures for Scalable Quantum Computing

As of 8 August 2026, this Paper Citation Record lists 31 of 31 outbound references and 0 inbound Pith citation observations for arXiv:2511.16289.

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

pith.paper-citation-record.v1
2511.16289 v2

Coverage vector

measured 31 of 31 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-03T21:16:24.805726Z

measured 31 of 31 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links

measured 0 of 1 external citation measurements

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

Source: cited_works

Reference resolution

31 of 31 outbound references displayed

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External citation measurements

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Outbound references

Observation d9ec97d4-c757-4b5c-a87c-dd2defc1d9b7 · outbound

This paper cites Physical Review A—Atomic, Molecular, and Optical Physics 70, 5 (2004), 052328.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Physical Review A—Atomic, Molecular, and Optical Physics 70, 5 (2004), 052328

Reference 1

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source=pdf_text observed=2026-08-03T21:16:20.781396Z digest=sha256:e0aab52953de17687b16870d3d6254142da89eb8d052eece99621c0354482332

Observation 3826d2f2-751f-46b3-a807-0f723fa0e252 · outbound

This paper cites M.Automated flag qubit insertion for reliable quantum circuit output.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing M.Automated flag qubit insertion for reliable quantum circuit output

Reference 2

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source=pdf_text observed=2026-08-03T21:16:20.867399Z digest=sha256:8dd9f3c64e11142846ea1217251d9ffcae0324538e88ace0aa0e3a03c7e148e0

Observation bde7dbd9-85c1-422f-b559-155e50c8e5a6 · outbound

This paper cites In25th International Conference on Theory and Applications of Satisfiability Testing(2022).

Medusa: Detecting and Removing Failures for Scalable Quantum Computing In25th International Conference on Theory and Applications of Satisfiability Testing(2022)

Reference 3

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Observation baf6e4e9-eaaf-447e-a8ed-cac026754148 · outbound

This paper cites G., and Feld, S.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing G., and Feld, S

Reference 4

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source=pdf_text observed=2026-08-03T21:16:21.139135Z digest=sha256:dd3d26e6bc6e3ce4459fd0eb931f92eac2c012c474e57f3ac0a76b0666b13606

Observation 041891d1-7f22-4fb6-95b8-a0fb5c94ea63 · outbound

This paper cites A., Li, S.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing A., Li, S

Reference 5

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source=pdf_text observed=2026-08-03T21:16:21.273036Z digest=sha256:367e5459b877d881f553393a9139bf25713ea199711c1d8d84e354ba06b8d23f

Observation 89b70daa-e9ea-4dd6-8e14-17974e09fdf2 · outbound

This paper cites an unresolved cited work.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Unresolved cited work

Reference 6

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source=pdf_text observed=2026-08-03T21:16:21.397765Z digest=sha256:7df025480adc5ad8f4cc72c8247792becb9cb67295fff666058c78cca80543f6

Observation d4be6e4e-5119-493c-b8c4-4a207dcc9c77 · outbound

This paper cites J., Browne, D.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing J., Browne, D

Reference 7

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source=pdf_text observed=2026-08-03T21:16:21.550427Z digest=sha256:deae235c60af731d4cb20e0e1fe6b72090e36da51f3771d04ba86db0daf57ff0

Observation e640e0e6-d13f-4f04-b59d-957124fffa40 · outbound

This paper cites InProceedings of the 26th Asia and South Pacific Medusa: Detecting and Removing Failures for Scalable Quantum Computing Design Automation Conference(2021), pp.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing InProceedings of the 26th Asia and South Pacific Medusa: Detecting and Removing Failures for Scalable Quantum Computing Design Automation Conference(2021), pp

Reference 8

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source=pdf_text observed=2026-08-03T21:16:21.707707Z digest=sha256:0ddd64c086aeb6a371ff490c2ac7646d9b065853b5e534facd1c76739dad38ce

Observation 39fe52e3-6455-4339-beac-59126fdfbce8 · outbound

This paper cites W.Fault-tolerant magic state preparation with flag qubits.Quantum 3(2019), 143.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing W.Fault-tolerant magic state preparation with flag qubits.Quantum 3(2019), 143

Reference 9

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source=pdf_text observed=2026-08-03T21:16:21.810197Z digest=sha256:b9a5b04033882ff4a9e6b4542dd22896522dc7b68b3b35562874fde23baa132d

Observation eed6d824-8055-4995-abce-f175c09dda3f · outbound

This paper cites W.Fault-tolerant quantum computation with few qubits.npj Quantum Information 4, 1 (2018), 42.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing W.Fault-tolerant quantum computation with few qubits.npj Quantum Information 4, 1 (2018), 42

Reference 10

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source=pdf_text observed=2026-08-03T21:16:21.982631Z digest=sha256:741770c4a3acaf8f9c65891a901aab82fa60fddf7d711f3f39e44de2b614ae16

Observation 3ee40fa8-005e-426b-ad0f-2ab01e0ffece · outbound

This paper cites W.Quantum error correction with only two extra qubits.Physical review letters 121, 5 (2018), 050502.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing W.Quantum error correction with only two extra qubits.Physical review letters 121, 5 (2018), 050502

Reference 11

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source=pdf_text observed=2026-08-03T21:16:22.152943Z digest=sha256:f86fefca9aa61df9aa444d03463d64c70e805b204a71f062988f92b4c9af8803

Observation f6d0eca5-37a0-4d54-95b4-98744fc79b8f · outbound

This paper cites W.Flag fault-tolerant error correction for any stabilizer code.PRX Quantum 1, 1 (2020), 010302.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing W.Flag fault-tolerant error correction for any stabilizer code.PRX Quantum 1, 1 (2020), 010302

Reference 12

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Observation 906dcef2-2deb-40bf-af06-a00ed7e51a45 · outbound

This paper cites In2024 15th International Conference on Information and Communication Technology Convergence (ICTC)(2024), IEEE, pp.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing In2024 15th International Conference on Information and Communication Technology Convergence (ICTC)(2024), IEEE, pp

Reference 13

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source=pdf_text observed=2026-08-03T21:16:22.399878Z digest=sha256:c384b34443c08665b46de1820b8cc1879e290ddce67b6605b8b0a8301e3fb785

Observation 549284b5-3155-49f6-962e-19fdaca9dd3e · outbound

This paper cites M., and Brown, K.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing M., and Brown, K

Reference 14

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source=pdf_text observed=2026-08-03T21:16:22.485832Z digest=sha256:b91ae986a6d113c4dd15ead3b0a623d23045f40e0dfca7425f6ca5a5b05d399e

Observation 5b637aed-32cd-4d23-891f-ee8372a58a23 · outbound

This paper cites Physical Review Letters 134, 9 (2025), 090603.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Physical Review Letters 134, 9 (2025), 090603

Reference 15

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source=pdf_text observed=2026-08-03T21:16:22.637638Z digest=sha256:d9a5001f22caa5614b12ea1c907d0d94a9f67ec6b9d66c3c3bcfe48b14c0193b

Observation c012700a-c51d-4358-9742-05031df9f966 · outbound

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

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Mind the gaps: The fraught road to quantum advantage

Reference 16

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source=pdf_text observed=2026-08-03T21:16:22.747152Z digest=sha256:3f01eb42282baedf26cdd03fc5b13316304b7af34bba0aeb7be50671fa2ce745

Observation 7b0bc2db-0232-4c2d-890e-431776237365 · outbound

This paper cites an unresolved cited work.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Unresolved cited work

Reference 18

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source=pdf_text observed=2026-08-03T21:16:22.877472Z digest=sha256:06641add7d4723448720864d82481c85b8bf05a58fb49891237d5b8fb510d7d9

Observation 6637f692-7ffd-4e57-aebc-ff29299fe0bf · outbound

This paper cites Expressing and Analyzing Quantum Algorithms with Qualtran.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Expressing and Analyzing Quantum Algorithms with Qualtran

Reference 19

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Observation 561faea6-c429-4f5b-9244-c3bcb9dbaee8 · outbound

This paper cites an unresolved cited work.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Unresolved cited work

Reference 20

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source=pdf_text observed=2026-08-03T21:16:23.176892Z digest=sha256:3dca7c73ed127733a74e779c1ad4157d2a3551b4ddfaab13213a9e4210a0f335

Observation 7ada3ca6-d059-4a3d-b14d-b35015c355ff · outbound

This paper cites G.Qram: A survey and critique.arXiv preprint arXiv:2305.10310(2023).

Medusa: Detecting and Removing Failures for Scalable Quantum Computing G.Qram: A survey and critique.arXiv preprint arXiv:2305.10310(2023)

Reference 21

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Observation fa54c2cc-54b2-482e-8406-9a1812616d83 · outbound

This paper cites A., and Brun, T.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing A., and Brun, T

Reference 22

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source=pdf_text observed=2026-08-03T21:16:23.393852Z digest=sha256:d1a4a61366db8a9042ed9b1d44aff81edc07b9f3f674a8a3e18d33886132074f

Observation 9a4b2f6f-f058-4d73-a4fe-b02b9c6bdfe1 · outbound

This paper cites an unresolved cited work.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Unresolved cited work

Reference 23

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source=pdf_text observed=2026-08-03T21:16:23.519981Z digest=sha256:4c98bb813eb7336371cecb2c696170609111b8e8ebc438b9ba0d8440f2f8b7d8

Observation eed391b8-869d-464c-9d75-8b6832aa91d3 · outbound

This paper cites R., and Devitt, S.Compare the pair: Rotated versus unrotated surface codes at equal logical error rates.Physical Review Research 7, 3 (2025), 033074.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing R., and Devitt, S.Compare the pair: Rotated versus unrotated surface codes at equal logical error rates.Physical Review Research 7, 3 (2025), 033074

Reference 24

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source=pdf_text observed=2026-08-03T21:16:23.642576Z digest=sha256:7f59d804d28f214cc381dae61bedc6a5d5c67af8d05253f1372166f6e73b8eb9

Observation 9b5fd623-4c86-4d8a-857a-35f6f5bfa432 · outbound

This paper cites J.Fault-tolerant, high-level quantum circuits: form, compilation and description.Quantum Science and Technology 2, 2 (2017), 025003.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing J.Fault-tolerant, high-level quantum circuits: form, compilation and description.Quantum Science and Technology 2, 2 (2017), 025003

Reference 25

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source=pdf_text observed=2026-08-03T21:16:23.761503Z digest=sha256:53f849355588a78964b08375266904a5f311e817bd020d6cabefb915fb0fe333

Observation e517050c-ef72-4ca9-99b0-60f5814ec73b · outbound

This paper cites [27]Preskill, J.Beyond nisq: The megaquop machine, 2025.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing [27]Preskill, J.Beyond nisq: The megaquop machine, 2025

Reference 26

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source=pdf_text observed=2026-08-03T21:16:23.890271Z digest=sha256:fad38939fe9497fa7f5129000e7b1764ba665c915070e2458d238e704130a181

Observation b031d0f3-62cd-4c50-99e2-1059518bb808 · outbound

This paper cites Helios: A 98-qubit trapped-ion quantum computer.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Helios: A 98-qubit trapped-ion quantum computer

Reference 28

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source=pdf_text observed=2026-08-03T21:16:24.054838Z digest=sha256:62905eac858df58f695394ad84dbb32c9661b16c6acd375bdbb7d56aa37844d5

Observation 2df6755d-7bbd-495b-95dd-41cfe08d1e32 · outbound

This paper cites InProceedings of the 28th Asia and South Pacific Design Automation Conference(2023), pp.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing InProceedings of the 28th Asia and South Pacific Design Automation Conference(2023), pp

Reference 29

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source=pdf_text observed=2026-08-03T21:16:24.220299Z digest=sha256:0d6e49712c41aa8a225accb98642bb584e8a5f2fb7443b0fee3dcdbfb791c7e4

Observation 8ef40745-09f6-44b1-86ae-f88e6f931ff5 · outbound

This paper cites CNOT-Optimal Clifford Synthesis as SAT.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing CNOT-Optimal Clifford Synthesis as SAT

Reference 30

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Observation d32f96c5-0f34-47ad-928e-7079e047e3b2 · outbound

This paper cites K., Paler, A., Gavriel, J., Myers, C.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing K., Paler, A., Gavriel, J., Myers, C

Reference 31

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source=pdf_text observed=2026-08-03T21:16:24.491442Z digest=sha256:6389fc7ce2b48a9882dbf2828d872bcbeacd67a742e9e286b9ce72a556384d24

Observation 81496f7c-43ec-4450-a515-57ab7548aa83 · outbound

This paper cites an unresolved cited work.

Medusa: Detecting and Removing Failures for Scalable Quantum Computing Unresolved cited work

Reference 32

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Observation c8aa7db7-2dc3-4c9c-b511-f99f9e61e8f2 · outbound

This paper cites D.Algorithmic fault tolerance for fast quantum computing.arXivorg(2024).

Medusa: Detecting and Removing Failures for Scalable Quantum Computing D.Algorithmic fault tolerance for fast quantum computing.arXivorg(2024)

Reference 33

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source=pdf_text observed=2026-08-03T21:16:24.805726Z digest=sha256:5ca1ebe97f735ac5a5ebeff1979fd0b6ae5d3fe1a91d9e2e85870a8bdb91dbc7

Pith citing papers

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