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Paper Citation Record · LEDGER

Physics inspired quantum algorithm for QCD splitting functions

As of 13 August 2026, this Paper Citation Record lists 89 of 89 outbound references and 1 inbound Pith citation observation for arXiv:2605.06789.

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

pith.paper-citation-record.v1
2605.06789 v2

Coverage vector

measured 89 of 89 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-05-25T06:01:19.276964Z

measured 90 of 90 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-12T06:34:41.77262+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-07-10T11:58:13.238673Z

measured 0 of 1 external citation measurements

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

Source: pith, observed 2026-07-10T12:07:03.620705Z

Reference resolution

89 of 89 outbound references displayed

  • verified exact19
  • verified fuzzy61
  • unresolved7
  • parse uncertain0
  • malformed identifier2
  • metadata mismatch0

External citation measurements

No source-named external measurement is stored.

Outbound references

Observation 63773aed-0684-4d76-a96b-94cced6fd0c0 · outbound

This paper cites Preskill,Quantum Computing in the NISQ era and beyond,Quantum2(2018) 79.

Physics inspired quantum algorithm for QCD splitting functions Preskill,Quantum Computing in the NISQ era and beyond,Quantum2(2018) 79

Reference 1

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Observation 119b4600-14ee-49e2-838c-7ac70f7367e4 · outbound

This paper cites Di Meglio, K.

Physics inspired quantum algorithm for QCD splitting functions Di Meglio, K

Reference 2

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Observation b2a1c10f-884e-4556-bece-cbd66d54f467 · outbound

This paper cites Nachman, D.

Physics inspired quantum algorithm for QCD splitting functions Nachman, D

Reference 3

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Observation 88aa0499-f3fa-4c78-9081-5f81abdd9c03 · outbound

This paper cites Bepari, S.

Physics inspired quantum algorithm for QCD splitting functions Bepari, S

Reference 4

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Observation fb4dd72e-9ea5-4683-b33f-16f369f572d5 · outbound

This paper cites Bepari, S.

Physics inspired quantum algorithm for QCD splitting functions Bepari, S

Reference 5

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Observation dc1c2df8-93a0-4a4d-8a14-d80b0e837950 · outbound

This paper cites Bauer, S.

Physics inspired quantum algorithm for QCD splitting functions Bauer, S

Reference 6

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Observation 37aa1bc1-0cde-41ad-9946-7eca93f5b7b7 · outbound

This paper cites Chawdhry and M.

Physics inspired quantum algorithm for QCD splitting functions Chawdhry and M

Reference 7

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Observation d3638aa6-7f0c-41f2-8b8a-dd627245c4a2 · outbound

This paper cites Jordan, K.S.M.

Physics inspired quantum algorithm for QCD splitting functions Jordan, K.S.M

Reference 8

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Observation 248051a9-df44-444a-9f20-83f0567c1d5d · outbound

This paper cites García-Álvarez, J.

Physics inspired quantum algorithm for QCD splitting functions García-Álvarez, J

Reference 9

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Observation 1ca097d2-fee5-40f9-82be-cf14a3534795 · outbound

This paper cites Halimeh, M.

Physics inspired quantum algorithm for QCD splitting functions Halimeh, M

Reference 10

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Observation cfe7e9a1-14df-4e7d-b541-4269da8f598b · outbound

This paper cites Tagliacozzo, A.

Physics inspired quantum algorithm for QCD splitting functions Tagliacozzo, A

Reference 11

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Observation 8a2e7b03-3e73-4816-a44b-dc7481b27a03 · outbound

This paper cites Silvi, E.

Physics inspired quantum algorithm for QCD splitting functions Silvi, E

Reference 12

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Observation 276dea48-7aff-4807-87ba-ca124f6c965b · outbound

This paper cites Klco, J.R.

Physics inspired quantum algorithm for QCD splitting functions Klco, J.R

Reference 13

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Observation 520aaf86-9545-4052-b90d-2f460f53c32a · outbound

This paper cites Quantum computational resources for lattice QCD in the strong-coupling limit.

Physics inspired quantum algorithm for QCD splitting functions Quantum computational resources for lattice QCD in the strong-coupling limit

Reference 14

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Observation d02e3af0-fc6e-4b4e-a4ae-c1a78ca0f34d · outbound

This paper cites Schuhmacher, L.

Physics inspired quantum algorithm for QCD splitting functions Schuhmacher, L

Reference 15

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Observation 5054ea9d-a6f7-47e0-b329-c170b21b7105 · outbound

This paper cites Tüysüz, C.

Physics inspired quantum algorithm for QCD splitting functions Tüysüz, C

Reference 16

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Observation b00caf1c-b74f-4bd5-b6e5-dc83683cc949 · outbound

This paper cites Funcke, T.

Physics inspired quantum algorithm for QCD splitting functions Funcke, T

Reference 17

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation d5a5dff3-062e-4fc3-91f5-83a998fd9118 · outbound

This paper cites Crippa, L.

Physics inspired quantum algorithm for QCD splitting functions Crippa, L

Reference 18

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 587b1db2-01f4-4242-9e35-5c179c48d7f6 · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 19

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Observation 0c5606c8-2ca4-48d5-af9e-8d8047af8146 · outbound

This paper cites Quantum Tomography at Colliders: With or Without Decays.

Physics inspired quantum algorithm for QCD splitting functions Quantum Tomography at Colliders: With or Without Decays

Reference 20

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arxiv_id, observed 2026-05-25T06:05:26.574919Z

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Observation a3cc6f9e-1e0c-4f50-87aa-b740977d6bbd · outbound

This paper cites Magano, A.

Physics inspired quantum algorithm for QCD splitting functions Magano, A

Reference 21

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation fd821f1f-78dd-48eb-a19f-573d49401ab7 · outbound

This paper cites Valassi, E.

Physics inspired quantum algorithm for QCD splitting functions Valassi, E

Reference 22

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Observation 0a7b9a66-c4ae-4f4c-a8aa-734dc13d7846 · outbound

This paper cites Albrecht, A.A.

Physics inspired quantum algorithm for QCD splitting functions Albrecht, A.A

Reference 23

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Observation 670d7365-a404-4887-91e9-8ea1a5dd96c2 · outbound

This paper cites Standard Model Physics at the HL-LHC and HE-LHC.

Physics inspired quantum algorithm for QCD splitting functions Standard Model Physics at the HL-LHC and HE-LHC

Reference 24

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arxiv_id, observed 2026-05-25T06:05:26.073514Z

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Observation 5d4f2db1-5f5a-4a03-93fb-a311be1606d7 · outbound

This paper cites Buckley, C.

Physics inspired quantum algorithm for QCD splitting functions Buckley, C

Reference 25

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Observation c9e316e1-6ae9-42da-b06a-9b9cc1043988 · outbound

This paper cites Andersson, G.

Physics inspired quantum algorithm for QCD splitting functions Andersson, G

Reference 26

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation a0438a6f-5103-4bb0-86d0-6a0735264775 · outbound

This paper cites Field and S.

Physics inspired quantum algorithm for QCD splitting functions Field and S

Reference 27

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 8ba8c328-0d5b-4e4e-81f6-be94620654ec · outbound

This paper cites Mildenberger, W.

Physics inspired quantum algorithm for QCD splitting functions Mildenberger, W

Reference 28

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 8e928a21-0b5a-43da-835c-b7a834a4d572 · outbound

This paper cites Alexandrou, A.

Physics inspired quantum algorithm for QCD splitting functions Alexandrou, A

Reference 29

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation cd9135fc-b1bf-45cf-b2da-b2ac49ded555 · outbound

This paper cites An Introduction to PYTHIA 8.2.

Physics inspired quantum algorithm for QCD splitting functions An Introduction to PYTHIA 8.2

Reference 30

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local_arxiv, observed 2026-05-25T06:05:26.545125Z

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation b7233eb4-688e-46e3-bf6a-905174d7608f · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 31

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation c9dbca44-b70b-4960-92a0-e1b66df56eb9 · outbound

This paper cites Gleisberg, S.

Physics inspired quantum algorithm for QCD splitting functions Gleisberg, S

Reference 32

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 39fe661d-e60e-4db3-8055-c7117ed02fe2 · outbound

This paper cites Ellis, W.J.

Physics inspired quantum algorithm for QCD splitting functions Ellis, W.J

Reference 33

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation d42a0262-aaae-4d72-91bc-1b9086da01b7 · outbound

This paper cites Low and T.

Physics inspired quantum algorithm for QCD splitting functions Low and T

Reference 34

Resolution
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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 529446d1-5fa8-476b-b064-132794de4903 · outbound

This paper cites Beane, D.B.

Physics inspired quantum algorithm for QCD splitting functions Beane, D.B

Reference 35

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 897417b7-9227-4bbc-88ca-29a7309dc8a1 · outbound

This paper cites Collaboration,Observation of quantum entanglement with top quarks at the ATLAS detector,Nature633(2024) 542.

Physics inspired quantum algorithm for QCD splitting functions Collaboration,Observation of quantum entanglement with top quarks at the ATLAS detector,Nature633(2024) 542

Reference 36

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raw_fallback, observed 2026-05-25T06:16:41.103891Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation fb25b2c5-9535-46b8-a037-6f01e85d3d14 · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 37

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arxiv_id, observed 2026-05-25T06:05:26.525203Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:70a1eccfc7b373f62f036068adad186e0e8a987776cd3c20f538e1d811dc9b6d

Observation 4be688f3-0d3a-4104-8b51-634b1c5b8bb5 · outbound

This paper cites Florio, D.

Physics inspired quantum algorithm for QCD splitting functions Florio, D

Reference 38

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raw_fallback, observed 2026-05-25T06:16:41.106471Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:7afaa1f9f6464b89475559a8ba584c41f792629a45fdc660d7b5fcdf92ef969c

Observation 2f2ff770-9e73-4793-a777-62d3d2b380f2 · outbound

This paper cites Florio, D.

Physics inspired quantum algorithm for QCD splitting functions Florio, D

Reference 39

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.116001Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:244c9672319eec14aee4e54f4bee4523fa0cbec472e76fca81c481cceb9e14c0

Observation ba06e33f-2043-47b5-9145-0a7f58bd7206 · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 40

Resolution
unresolved
raw_fallback, observed 2026-05-25T06:16:41.091822Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:dc5dbd5112992cf2620ed546f834a8c3f60c24e2d064acaaad1d8051531de7b6

Observation 462d83b4-2810-480b-aad3-331b4ddcb854 · outbound

This paper cites Aoude, A.J.

Physics inspired quantum algorithm for QCD splitting functions Aoude, A.J

Reference 41

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.084954Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:f2c4d8964c9247a91347d6642b16398b68ba5aade52e5e39aefa41a79e57c44d

Observation d9b464cd-81f5-49b5-aa0e-2aba660a5aac · outbound

This paper cites McGinnis,Symmetry, Entanglement, and the S-matrix.

Physics inspired quantum algorithm for QCD splitting functions McGinnis,Symmetry, Entanglement, and the S-matrix

Reference 42

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.078602Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:859054ffdb81432146c98dffa4f84780f4746b83348af439de851e56533dbd61

Observation 4c07741e-f956-4179-927b-469a73dd7db3 · outbound

This paper cites McGinnis,Quantum Computational Structure ofSU(N)Scattering, Nov.

Physics inspired quantum algorithm for QCD splitting functions McGinnis,Quantum Computational Structure ofSU(N)Scattering, Nov

Reference 43

Resolution
verified exact
arxiv_id, observed 2026-05-25T06:05:26.100229Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:c9ca49adbb7e4f1467559d3af25df6d22d710ce6aeb7c2bc07e8c03cbcdbc86d

Observation b9419832-1fac-4991-a09c-add6d542394a · outbound

This paper cites Amram, L.

Physics inspired quantum algorithm for QCD splitting functions Amram, L

Reference 44

Resolution
verified exact
arxiv_id, observed 2026-05-25T06:05:26.535106Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:85e3f0b8b93aa3984bc0435e61e6cd8c7e6672b87fd84be2e87a17ef8adfde4d

Observation 78640f4f-9742-4e9b-bddb-294096ee02b2 · outbound

This paper cites Deep Learning and its Application to LHC Physics.

Physics inspired quantum algorithm for QCD splitting functions Deep Learning and its Application to LHC Physics

Reference 46

Resolution
verified exact
local_arxiv, observed 2026-05-25T06:05:26.519821Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:ac9ff4ea7c0aad990dfcfcce5c957ec16b1be0ef931d5e7f4e0b2051da9385af

Observation b0de3221-65e4-403f-a608-0d35ce7af61f · outbound

This paper cites de Oliveira, M.

Physics inspired quantum algorithm for QCD splitting functions de Oliveira, M

Reference 47

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.080750Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:a7e37f317459cad51552776c5ee9065c73f342af2d65a95d9386cee8f40e7b08

Observation 9dbbfb39-5d41-436b-af69-96bbcbabfb66 · outbound

This paper cites Qu and L.

Physics inspired quantum algorithm for QCD splitting functions Qu and L

Reference 48

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.083150Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:41d593575a28bdd651fe6706d96b905faee5ba9c8a6419f143e511a9fca223c5

Observation 0c6c2960-bef4-400f-92f3-f4e8b3068328 · outbound

This paper cites Komiske, E.M.

Physics inspired quantum algorithm for QCD splitting functions Komiske, E.M

Reference 49

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.087064Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:3f03f0f511e0dc6cd29723c39d57246463c431e37615ae41f34bd27bb55cb5f9

Observation f70472ad-37ca-4a93-9cc2-f628e8cb4ad6 · outbound

This paper cites Monk,Deep Learning as a Parton Shower,Journal of High Energy Physics2018(2018) 21.

Physics inspired quantum algorithm for QCD splitting functions Monk,Deep Learning as a Parton Shower,Journal of High Energy Physics2018(2018) 21

Reference 50

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.089389Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:7ff31819fbfa478646a9ccc7ad109526b73fc1eeb9cec3c917515e5f0ba40f02

Observation 3f21d1d7-30fc-4139-bca9-abb70ccd8795 · outbound

This paper cites Explainable machine learning of the underlying physics of high-energy particle collisions.

Physics inspired quantum algorithm for QCD splitting functions Explainable machine learning of the underlying physics of high-energy particle collisions

Reference 51

Resolution
verified exact
arxiv_id, observed 2026-05-25T06:05:26.530142Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:cdf9274f5b2181b3b7e334a8dcec6da0e7f12228a596cb74bc4e8a9b768d0365

Observation 662eb174-7647-48ce-82b8-95ead59cb471 · outbound

This paper cites Ghosh, X.

Physics inspired quantum algorithm for QCD splitting functions Ghosh, X

Reference 52

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.094020Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:ac2a4159c957d2cf8b6d22d49f947c79e16130462f58785e2b46e4a7c0a69242

Observation d3720922-dd64-4512-89ed-a856d7c4b19d · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 53

Resolution
unresolved
raw_fallback, observed 2026-05-25T06:16:41.068754Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:98f8969739b1e26f1fde99575271e237d13c966f378ce8c007047b3b050e2745

Observation fde7a4e7-1bbd-416b-829b-82a2cffdab9a · outbound

This paper cites Fitting a Deep Generative Hadronization Model.

Physics inspired quantum algorithm for QCD splitting functions Fitting a Deep Generative Hadronization Model

Reference 54

Resolution
verified exact
arxiv_id, observed 2026-05-25T06:05:26.509815Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:c270201e469b69a1925f7b9efb8f55392b0e56aff8f2f33417782c90231b728e

Observation a3083411-cf20-4264-a31f-91da8a5d58f0 · outbound

This paper cites Quantum algorithms for supervised and unsupervised machine learning.

Physics inspired quantum algorithm for QCD splitting functions Quantum algorithms for supervised and unsupervised machine learning

Reference 55

Resolution
verified exact
local_arxiv, observed 2026-05-25T06:05:26.514548Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:c2c67284603316ba980b617a2ba733a3fcd202c04fb7de4bbf0064760830b6f3

Observation b98e9132-9408-488c-9882-990573200414 · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 56

Resolution
unresolved
raw_fallback, observed 2026-05-25T06:16:41.071670Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:888179282de8439c43f86e1e9610891713435296c31750c2c9137f0967989447

Observation f7647438-a1e8-4ba1-9501-3e3860bf5917 · outbound

This paper cites Schuld, I.

Physics inspired quantum algorithm for QCD splitting functions Schuld, I

Reference 57

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.061173Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:ef898d697c3b26a2cae91a02ce3185317a03748ca947a483ddbcc8600b335ab3

Observation d6281e73-87cd-4ba1-9e2e-160608f0e2eb · outbound

This paper cites Schuld and F.

Physics inspired quantum algorithm for QCD splitting functions Schuld and F

Reference 58

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.076096Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:e7c6e30b16bd6af7f1fc6449e78c566299db174611fae4e490b46cc9cddd7e78

Observation 6afbd9eb-0aa7-4867-bb23-3ed9a5c30648 · outbound

This paper cites Gibbs, Z.

Physics inspired quantum algorithm for QCD splitting functions Gibbs, Z

Reference 59

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.054950Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:62848bd4ee0beac555b4c6bf37a641f08b26e18280025c3b682df7dc7196c8e6

Observation 77e75771-d034-45ff-aee0-d680a97ae8c7 · outbound

This paper cites Belis, P.

Physics inspired quantum algorithm for QCD splitting functions Belis, P

Reference 60

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.047736Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:55452580e44bd4183eab98215920bd86e6e98366c9cacf89f2b0942ac6e3e2b5

Observation 783df53a-471d-4c0e-86e0-b9d29fe60e2b · outbound

This paper cites Tüysüz,Quantum machine learning with near and future term quantum computers, Ph.D.

Physics inspired quantum algorithm for QCD splitting functions Tüysüz,Quantum machine learning with near and future term quantum computers, Ph.D

Reference 61

Resolution
malformed identifier
doi_truncated, observed 2026-05-25T06:05:26.067335Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:d34230d3274a011604f7dadf458cecec19b6f1097a949a79a43d9cc010999e87

Observation df641ad2-919a-428b-9c1b-7859caf49c0a · outbound

This paper cites Meyer, M.

Physics inspired quantum algorithm for QCD splitting functions Meyer, M

Reference 62

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.050199Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:c0ff1b46615c62f340ae1b70a19f90abb19f52318d4a46e5e3ad860b9b221334

Observation 734b5f03-ec99-4c19-813e-2f0fb456af84 · outbound

This paper cites Park and N.

Physics inspired quantum algorithm for QCD splitting functions Park and N

Reference 63

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.055261Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:7bcbdd98dee78f205cc69869d85506f41de2e17de22a44f7e3f3f8781f483085

Observation 2433bebc-01f4-49bc-827a-cd9c9dd1ee6e · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 64

Resolution
unresolved
raw_fallback, observed 2026-05-25T06:16:41.059354Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:3acb70a3d6d5af9de57689897dcbf9328ed9f2e11addc91739407eefa1830d08

Observation 2912369c-1e59-46d4-8903-feabd3115e53 · outbound

This paper cites Marrero, B.

Physics inspired quantum algorithm for QCD splitting functions Marrero, B

Reference 65

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.057365Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:24f40f15d15a5f558374991578eb2ee12f6c3afbcb9735f49849cb449d9a0274

Observation 931a334e-4865-4a32-975d-4c1728d84fa8 · outbound

This paper cites an unresolved cited work.

Physics inspired quantum algorithm for QCD splitting functions Unresolved cited work

Reference 66

Resolution
unresolved
raw_fallback, observed 2026-05-25T06:16:41.113536Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:3cfbaa697755c6812fd0f97b20a8aa95b5d6c4e37f9107db5ed1d16763a35628

Observation 69c94d3e-b568-4e70-a8c5-87c9f700f0a0 · outbound

This paper cites Campbell, M.

Physics inspired quantum algorithm for QCD splitting functions Campbell, M

Reference 67

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.110544Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:4f68228ef0fabbf9c18d9241861b6f001e93e869bc0b207dfd1e9f36180a2789

Observation 0cdbb707-e4d5-4e8f-b7b7-3d34e90c7e48 · outbound

This paper cites Khalek, S.

Physics inspired quantum algorithm for QCD splitting functions Khalek, S

Reference 68

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.127707Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:857ebb6d49b9daececb7f07d8ee519fc079323cdcbf6f08f272075336797e970

Observation e65eb81b-63db-4d29-9466-0bbe285243bc · outbound

This paper cites Abreu, W.

Physics inspired quantum algorithm for QCD splitting functions Abreu, W

Reference 69

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.107983Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:b8c051e17e3557d6e1531b97b2beece1f4ade504294bde43f05bf54534a4d1e6

Observation fe862ec1-e29e-4017-ba38-4b58efcfae40 · outbound

This paper cites Campbell, J.W.

Physics inspired quantum algorithm for QCD splitting functions Campbell, J.W

Reference 70

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.047096Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:79dc8f40d0c9670e2637063e499a01d7c5a1d89825a73bf1a446aef15a41c8f0

Observation e3ef1d10-5df4-4510-a657-45dcf20b176b · outbound

This paper cites Collins, D.E.

Physics inspired quantum algorithm for QCD splitting functions Collins, D.E

Reference 71

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.052783Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:67c2df2429c674b87bfb83dcf1abe794ee06c22d4f774ae7527bc22acf9554f6

Observation b75d88b2-cf16-458f-bc9f-7a33b09ae78f · outbound

This paper cites Peskin and D.V.

Physics inspired quantum algorithm for QCD splitting functions Peskin and D.V

Reference 72

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.092280Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:fd15a202377b55d64a9ef9154a26f575d1dae746d66cc87d7561a6036da96de5

Observation fc01daa8-416c-4d4e-aa04-0612654cb537 · outbound

This paper cites Schwartz,Quantum Field Theory and the Standard Model, Cambridge University Press, Cambridge, UK (2014).

Physics inspired quantum algorithm for QCD splitting functions Schwartz,Quantum Field Theory and the Standard Model, Cambridge University Press, Cambridge, UK (2014)

Reference 73

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.022271Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:70dade6e9c6e366152aed96ef38d079ed20d26fe4aee018e422f0b3bf0f1aa37

Observation 804b89c8-68e0-4620-88b4-8960f1f4685a · outbound

This paper cites Afik and J.R.

Physics inspired quantum algorithm for QCD splitting functions Afik and J.R

Reference 74

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.008519Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:aa0d720e2f4a035cb91af74f1719dc360b1a5d1f99a8d162570478b500d60d5a

Observation 965b9fcb-3ce7-4554-8d04-bbf8810b1c04 · outbound

This paper cites Cheng, T.

Physics inspired quantum algorithm for QCD splitting functions Cheng, T

Reference 75

Resolution
verified fuzzy
raw_fallback, observed 2026-05-25T06:16:41.088791Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-25T06:01:19.276964Z digest=sha256:0c39ba8c0973270552f92a611c276c80eb52fe52634a2fc9c0c628f05cb55da0

Observation 0b4b5b3c-b11f-4c5d-b868-c5bcd2031f92 · outbound

This paper cites Quantum Tomography at Colliders: With or Without Decays.

Physics inspired quantum algorithm for QCD splitting functions Quantum Tomography at Colliders: With or Without Decays

Reference 76

Resolution
verified exact
arxiv_id, observed 2026-05-25T06:05:26.085093Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 7e5be2ac-114c-4152-9e60-f307f30fd51f · outbound

This paper cites Wootters,Entanglement of Formation of an Arbitrary State of Two Qubits,Phys.

Physics inspired quantum algorithm for QCD splitting functions Wootters,Entanglement of Formation of an Arbitrary State of Two Qubits,Phys

Reference 77

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Observation d0d51b9c-256e-407a-a6a8-0ac1ec4c5630 · outbound

This paper cites Vidal,Efficient Classical Simulation of Slightly Entangled Quantum Computations,Physical Review Letters91(2003) 147902.

Physics inspired quantum algorithm for QCD splitting functions Vidal,Efficient Classical Simulation of Slightly Entangled Quantum Computations,Physical Review Letters91(2003) 147902

Reference 78

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Observation 4d39e159-4fd5-46f3-9ca1-6427a2481a32 · outbound

This paper cites 10.7483/OPENDATA.CMS.1KTG.X0W4.

Physics inspired quantum algorithm for QCD splitting functions 10.7483/OPENDATA.CMS.1KTG.X0W4

Reference 79

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Observation 31139743-4b4e-4545-9203-008b7d94fec4 · outbound

This paper cites 10.7483/OPENDATA.CMS.LT9E.T7RQ.

Physics inspired quantum algorithm for QCD splitting functions 10.7483/OPENDATA.CMS.LT9E.T7RQ

Reference 80

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Observation 2d51e9bb-55e1-450c-81e6-17f215b8f4af · outbound

This paper cites Larkoski, S.

Physics inspired quantum algorithm for QCD splitting functions Larkoski, S

Reference 81

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Observation 4195381a-e3c7-4608-8063-cbf65107cc05 · outbound

This paper cites The anti-k_t jet clustering algorithm.

Physics inspired quantum algorithm for QCD splitting functions The anti-k_t jet clustering algorithm

Reference 82

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Observation d0c0108b-6617-477c-a768-c7d21038e7db · outbound

This paper cites Better Jet Clustering Algorithms.

Physics inspired quantum algorithm for QCD splitting functions Better Jet Clustering Algorithms

Reference 83

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Observation 477f8618-c717-4222-892e-c4ccc1388ed6 · outbound

This paper cites Hadronization Corrections to Jet Cross Sections in Deep-Inelastic Scattering.

Physics inspired quantum algorithm for QCD splitting functions Hadronization Corrections to Jet Cross Sections in Deep-Inelastic Scattering

Reference 84

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Observation 597afee7-7b49-4b5b-8f81-9a07d7f45358 · outbound

This paper cites Bergholm, J.

Physics inspired quantum algorithm for QCD splitting functions Bergholm, J

Reference 85

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Observation 5ba006d8-7817-45a5-be47-63fcbc713cbb · outbound

This paper cites Neill and W.J.

Physics inspired quantum algorithm for QCD splitting functions Neill and W.J

Reference 86

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Observation bcf47ca5-0b84-412f-9caa-52d72a84bdf6 · outbound

This paper cites Learning response functions of analog quantum computers: analysis of neutral-atom and superconducting platforms.

Physics inspired quantum algorithm for QCD splitting functions Learning response functions of analog quantum computers: analysis of neutral-atom and superconducting platforms

Reference 87

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Observation fd33d069-1381-4bad-935c-2924a848b459 · outbound

This paper cites Borras, S.Y.

Physics inspired quantum algorithm for QCD splitting functions Borras, S.Y

Reference 88

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Observation 1cb54554-0164-4e22-8905-3607be5abef5 · outbound

This paper cites Similarly, the reduced state for the second qubit is ˆρB = TrA(ˆρAB) = =   1 2 1 + z 2[1−(sec(γ ′ 1)−2) cos(γ ′ 3)] ξ(γ ′ 1, π−γ ′ 3) ξ(γ ′ 1, π−γ ′.

Physics inspired quantum algorithm for QCD splitting functions Similarly, the reduced state for the second qubit is ˆρB = TrA(ˆρAB) = =   1 2 1 + z 2[1−(sec(γ ′ 1)−2) cos(γ ′ 3)] ξ(γ ′ 1, π−γ ′ 3) ξ(γ ′ 1, π−γ ′

Reference 89

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Observation e2000238-4ae6-4648-9c68-cdedc6015276 · outbound

This paper cites (C.6) From the AspenOpenJets data set, we obtained the following parameter distribution for γ1 andγ 3, respectively – 26 – Figure 13.

Physics inspired quantum algorithm for QCD splitting functions (C.6) From the AspenOpenJets data set, we obtained the following parameter distribution for γ1 andγ 3, respectively – 26 – Figure 13

Reference 90

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Pith citing papers

Observation 13d41828-b60c-44a6-9005-1bbe300ee132 · inbound

Overview of Applications of Quantum Computing in QCD cites this paper.

Overview of Applications of Quantum Computing in QCD Physics inspired quantum algorithm for QCD splitting functions

Reference 10

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