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Paper Citation Record · LEDGER

General framework for verifying pure quantum states in the adversarial scenario

As of 15 August 2026, this Paper Citation Record lists 75 of 75 outbound references and 1 inbound Pith citation observation for arXiv:1909.01943.

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

pith.paper-citation-record.v1
1909.01943 v2

Coverage vector

measured 75 of 75 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-14T05:14:10.296002Z

measured 76 of 76 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-15T06:32:42.880941+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-11T10:31:51.989722Z

measured 0 of 1 external citation measurements

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

Source: pith, observed 2026-08-11T10:31:52.031954Z

Reference resolution

75 of 75 outbound references displayed

  • verified exact5
  • verified fuzzy38
  • unresolved32
  • parse uncertain0
  • malformed identifier0
  • metadata mismatch0

External citation measurements

No source-named external measurement is stored.

Outbound references

Observation 3149ebd7-ef53-41a9-a7f8-624ee1195eb7 · outbound

This paper cites Let ρ be an arbitrary permutation- invariant diagonal density matrix on H⊗(N +1) with de- compositionρ =∑ k∈SNckρk, where ck form a probabil- ity distribution on SN.

General framework for verifying pure quantum states in the adversarial scenario Let ρ be an arbitrary permutation- invariant diagonal density matrix on H⊗(N +1) with de- compositionρ =∑ k∈SNckρk, where ck form a probabil- ity distribution on SN

Reference 1

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Observation 5f70d5f8-a3b2-433b-a18e-e6d6a4455e06 · outbound

This paper cites an unresolved cited work.

General framework for verifying pure quantum states in the adversarial scenario Unresolved cited work

Reference 2

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Observation b6aa0f9b-c987-4bd6-9519-1e24d2f6273f · outbound

This paper cites an unresolved cited work.

General framework for verifying pure quantum states in the adversarial scenario Unresolved cited work

Reference 3

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Observation 11e7c0c8-57c1-4785-b5c7-3ce20a8c2d4a · outbound

This paper cites an unresolved cited work.

General framework for verifying pure quantum states in the adversarial scenario Unresolved cited work

Reference 4

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Observation cd4111b2-86d5-41ae-a8e9-4c9fc922f763 · outbound

This paper cites Here δc is defined in Eq.

General framework for verifying pure quantum states in the adversarial scenario Here δc is defined in Eq

Reference 5

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Observation ced12a9b-1be7-4b0c-9ce9-1d766faf1e6f · outbound

This paper cites To prove Eq.

General framework for verifying pure quantum states in the adversarial scenario To prove Eq

Reference 6

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Observation 22bece13-65a5-4b42-80c1-4aa6b308b0be · outbound

This paper cites an unresolved cited work.

General framework for verifying pure quantum states in the adversarial scenario Unresolved cited work

Reference 7

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Observation 1effa097-2bd9-4e24-bdf5-422d2b264a35 · outbound

This paper cites (72) Proof of Theorem 1.

General framework for verifying pure quantum states in the adversarial scenario (72) Proof of Theorem 1

Reference 8

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Observation 58cd0035-b7d3-4968-ae2d-093d9cb16703 · outbound

This paper cites By the definition of F (N,δ, Ω) in Eq.

General framework for verifying pure quantum states in the adversarial scenario By the definition of F (N,δ, Ω) in Eq

Reference 9

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source=pdf_text observed=2026-08-14T05:14:10.022577Z digest=sha256:f23c0e44c70f2539165d47744f25335f8b032e34f20871e8a4c491fdc65254d3

Observation e458f41b-4446-4209-866e-9dd06bdcda3c · outbound

This paper cites In addition, β = λ2 and τ =λD are the second largest and the smallest eigenval- ues; meanwhile, ν = 1 −β.

General framework for verifying pure quantum states in the adversarial scenario In addition, β = λ2 and τ =λD are the second largest and the smallest eigenval- ues; meanwhile, ν = 1 −β

Reference 10

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Observation e5de95be-e0ad-424e-b80c-dbb92045a526 · outbound

This paper cites convex” is replaced by “concave.

General framework for verifying pure quantum states in the adversarial scenario convex” is replaced by “concave

Reference 11

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source=pdf_text observed=2026-08-14T05:14:10.030699Z digest=sha256:1f2fff97f1e67de00e9b830fe3e3fc89c31a55fef6e09d9170dcd8aadc890df6

Observation d05d0447-3515-45f0-8ea4-75d6ffa797e6 · outbound

This paper cites Proof of Lemma 9.

General framework for verifying pure quantum states in the adversarial scenario Proof of Lemma 9

Reference 12

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Observation 11735b93-7552-402d-a257-a55101730e0e · outbound

This paper cites Quantum entanglement,.

General framework for verifying pure quantum states in the adversarial scenario Quantum entanglement,

Reference 13

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source=pdf_text observed=2026-08-14T05:14:10.039775Z digest=sha256:89c2441cdc7b77bad348442a129df77b0351bf262cd7899ec80a41425d7f1945

Observation 82a088c6-c4e7-4eea-9751-afd72715a3ca · outbound

This paper cites Entanglement detection,.

General framework for verifying pure quantum states in the adversarial scenario Entanglement detection,

Reference 14

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source=pdf_text observed=2026-08-14T05:14:10.044089Z digest=sha256:90fff0562c91576993629f5d4f3a9d500c38c0ad4b1b38e3506972a9c57120c1

Observation 5eb7a0e1-d65e-4783-b55f-179a54204f4d · outbound

This paper cites Multiparty en- tanglement in graph states,.

General framework for verifying pure quantum states in the adversarial scenario Multiparty en- tanglement in graph states,

Reference 15

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Observation 6e6a0168-c2e4-4c56-95c4-655ca017f692 · outbound

This paper cites Local entanglability and multipartite entanglement,.

General framework for verifying pure quantum states in the adversarial scenario Local entanglability and multipartite entanglement,

Reference 16

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Observation ea7c0cb9-9c83-4969-b762-5daedff38feb · outbound

This paper cites Encoding hy- pergraphs into quantum states,.

General framework for verifying pure quantum states in the adversarial scenario Encoding hy- pergraphs into quantum states,

Reference 17

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Observation 2eab282c-6894-4c14-8a02-9968d9c0dde9 · outbound

This paper cites Quantum hypergraph states,.

General framework for verifying pure quantum states in the adversarial scenario Quantum hypergraph states,

Reference 18

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Observation 32853acc-3cbe-4364-bc86-46c4a0e268b5 · outbound

This paper cites Qudit hypergraph states,.

General framework for verifying pure quantum states in the adversarial scenario Qudit hypergraph states,

Reference 19

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Observation 17813713-427f-45e3-a9a4-50034728c988 · outbound

This paper cites Qudit hypergraph states and their properties,.

General framework for verifying pure quantum states in the adversarial scenario Qudit hypergraph states and their properties,

Reference 20

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Observation 421efc92-5f15-4782-b86f-5407bd756a29 · outbound

This paper cites A one-way quantum computer,.

General framework for verifying pure quantum states in the adversarial scenario A one-way quantum computer,

Reference 21

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Observation dacd105e-923a-4885-b5f2-00431fa55fd6 · outbound

This paper cites Measurement-based quantum computation on cluster states,.

General framework for verifying pure quantum states in the adversarial scenario Measurement-based quantum computation on cluster states,

Reference 22

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Observation 6ca75b98-b69e-42be-ab74-d0a0d5766633 · outbound

This paper cites Uni- versal blind quantum computation,.

General framework for verifying pure quantum states in the adversarial scenario Uni- versal blind quantum computation,

Reference 23

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Observation ecc2a879-d70b-4324-b3a3-df67f03fa96f · outbound

This paper cites Blind quantum computation protocol in which Alice only makes measurements,.

General framework for verifying pure quantum states in the adversarial scenario Blind quantum computation protocol in which Alice only makes measurements,

Reference 24

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Observation d4340efa-8a89-401c-b328-e59b85b21ab3 · outbound

This paper cites Verifiable measurement- only blind quantum computing with stabilizer testing,.

General framework for verifying pure quantum states in the adversarial scenario Verifiable measurement- only blind quantum computing with stabilizer testing,

Reference 25

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Observation e8e0ad41-6084-4e75-99c3-9cd64939716a · outbound

This paper cites Verifiable fault tolerance in measurement-based quantum computation,.

General framework for verifying pure quantum states in the adversarial scenario Verifiable fault tolerance in measurement-based quantum computation,

Reference 26

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Observation efe150b6-d432-4120-9c0d-f09a6ac6a060 · outbound

This paper cites Self-guaranteed measurement-based quantum computation,.

General framework for verifying pure quantum states in the adversarial scenario Self-guaranteed measurement-based quantum computation,

Reference 27

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source=pdf_text observed=2026-08-14T05:14:10.097662Z digest=sha256:cdc83b9f245501df4df5f97272e59aff0001119d55d80cc54dd96c8f6ea3f279

Observation dbc17c35-dd33-4c98-9591-9e7090f2b87d · outbound

This paper cites Quantum computational universality of hypergraph states with Pauli-X and Z basis measurements,.

General framework for verifying pure quantum states in the adversarial scenario Quantum computational universality of hypergraph states with Pauli-X and Z basis measurements,

Reference 28

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source=pdf_text observed=2026-08-14T05:14:10.102129Z digest=sha256:7811f89d118f749d62121fbab12f7db3b1c745cd407dfa66acc91b9fd2097789

Observation eb90916d-4487-4918-bf16-cb2872873603 · outbound

This paper cites Hierarchy of universal entang le- ment in 2D measurement-based quantum computation,.

General framework for verifying pure quantum states in the adversarial scenario Hierarchy of universal entang le- ment in 2D measurement-based quantum computation,

Reference 29

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Observation 6dada3e9-63e9-42c1-95b7-030b146edc71 · outbound

This paper cites Verification of hypergraph states,.

General framework for verifying pure quantum states in the adversarial scenario Verification of hypergraph states,

Reference 30

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source=pdf_text observed=2026-08-14T05:14:10.110054Z digest=sha256:d3f1d5884d18322dab8900cd81171bcc0c8cbdc34599a0a6234f15a7a435a8b9

Observation 05c6bd11-7b59-48d5-8d03-a6fbdf332502 · outbound

This paper cites Chang- ing the circuit-depth complexity of measurement-based quantum computation with hypergraph states,.

General framework for verifying pure quantum states in the adversarial scenario Chang- ing the circuit-depth complexity of measurement-based quantum computation with hypergraph states,

Reference 31

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source=pdf_text observed=2026-08-14T05:14:10.113917Z digest=sha256:31afae9c15311fc127c766cd0390118e4eff41dba0ec488574b5063e98710006

Observation 428a40ad-5969-4571-8967-3100a220f2df · outbound

This paper cites Stabilizer Codes and Quantum Error Correction.

General framework for verifying pure quantum states in the adversarial scenario Stabilizer Codes and Quantum Error Correction

Reference 32

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source=pdf_text observed=2026-08-14T05:14:10.118353Z digest=sha256:47c4580203a587a7bc77b8643f828175033b4be398cd71f236d9a5da2aea22c4

Observation f681c12a-e2a6-4fe4-b7ad-09ea397ba72f · outbound

This paper cites Quantum error- correcting codes associated with graphs,.

General framework for verifying pure quantum states in the adversarial scenario Quantum error- correcting codes associated with graphs,

Reference 33

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Observation 122f01b3-b009-4235-b631-15743f06a8d4 · outbound

This paper cites Distribution of entanglement in large-scale quantum networks,.

General framework for verifying pure quantum states in the adversarial scenario Distribution of entanglement in large-scale quantum networks,

Reference 34

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Observation b4acd3d0-c1f2-47a6-9610-5a2c1a31ea01 · outbound

This paper cites Ex- perimental verification of multipartite entanglement in quantum networks,.

General framework for verifying pure quantum states in the adversarial scenario Ex- perimental verification of multipartite entanglement in quantum networks,

Reference 35

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source=pdf_text observed=2026-08-14T05:14:10.131326Z digest=sha256:eebc22ac19972f4f14dcfd9fadd36ae38b0b502c7d74e571bedcc561e77b418c

Observation ae72019b-14ee-4bc6-b87b-417cc2456fba · outbound

This paper cites A simple protocol for certifying graph states and applications in quantum networks.

General framework for verifying pure quantum states in the adversarial scenario A simple protocol for certifying graph states and applications in quantum networks

Reference 36

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source=pdf_text observed=2026-08-14T05:14:10.135578Z digest=sha256:782933064341e4a3b2fe7ac6a07bccb17725e9e0709f240c0435359bd7fecc18

Observation e5adbc90-a254-4526-bf09-9b2f46d6ef5d · outbound

This paper cites Bell’s theorem without inequalities,.

General framework for verifying pure quantum states in the adversarial scenario Bell’s theorem without inequalities,

Reference 37

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source=pdf_text observed=2026-08-14T05:14:10.139810Z digest=sha256:3ccb75892d9997b5ed4847355cb156773be257b0a2702a97d2edd7132aef6fef

Observation c82f2d08-4037-4b81-b100-e1fc7971648c · outbound

This paper cites Nonlocality of cluster states of qubits,.

General framework for verifying pure quantum states in the adversarial scenario Nonlocality of cluster states of qubits,

Reference 38

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source=pdf_text observed=2026-08-14T05:14:10.143994Z digest=sha256:aad68e84824448b21cd3514a66660dc8af4c029a4a6294d6720ecee49cd1d1e7

Observation d04ffd77-79e9-41fb-8389-0d6c15ebc6db · outbound

This paper cites Bell inequalities for graph states,.

General framework for verifying pure quantum states in the adversarial scenario Bell inequalities for graph states,

Reference 39

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source=pdf_text observed=2026-08-14T05:14:10.148373Z digest=sha256:ff4d8193ae5247b58355044a0667e8801bcb53297afe769f79584a5596696720

Observation 01219a03-f908-4c8b-abfa-5b7459db9cdb · outbound

This paper cites Extreme violation of local realism in quantum hypergraph states,.

General framework for verifying pure quantum states in the adversarial scenario Extreme violation of local realism in quantum hypergraph states,

Reference 40

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source=pdf_text observed=2026-08-14T05:14:10.152654Z digest=sha256:669f5e15de5b97de167ab72693121f1823e63a099253d7032c76596f06af213c

Observation 00e228f2-5efe-4f12-8029-148968d31bf5 · outbound

This paper cites Coherence in spontaneous radiation pro- cesses,.

General framework for verifying pure quantum states in the adversarial scenario Coherence in spontaneous radiation pro- cesses,

Reference 41

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source=pdf_text observed=2026-08-14T05:14:10.156660Z digest=sha256:b00830968c2dc8645c612b518afc1ec6af4954d96e502f05d14193a4a432f49a

Observation 6665a5f0-ceac-4648-b6a6-64a7318212e6 · outbound

This paper cites Scalable multiparticle entanglement of trapped ions,.

General framework for verifying pure quantum states in the adversarial scenario Scalable multiparticle entanglement of trapped ions,

Reference 42

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source=pdf_text observed=2026-08-14T05:14:10.160692Z digest=sha256:927bf56faae966838599a52e5530ea5f050ad00fda5badb70346a695a4734435

Observation 56628bab-fb40-4995-b241-12bc9fba9004 · outbound

This paper cites Quantum metrol- ogy with nonclassical states of atomic ensembles,.

General framework for verifying pure quantum states in the adversarial scenario Quantum metrol- ogy with nonclassical states of atomic ensembles,

Reference 43

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source=pdf_text observed=2026-08-14T05:14:10.164582Z digest=sha256:1670ca43489601f684b92f1e2fbcd2afa33ecd689db5d8dc0318e4d169cc95a8

Observation 0c81f196-d038-4890-b288-905531b71112 · outbound

This paper cites Matrix product states, projected entangled pair states, and variational renormalization group methods for quantum spin sys- tems,.

General framework for verifying pure quantum states in the adversarial scenario Matrix product states, projected entangled pair states, and variational renormalization group methods for quantum spin sys- tems,

Reference 44

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source=pdf_text observed=2026-08-14T05:14:10.168750Z digest=sha256:4dcc60bcc8601f63165de0d826af200d127af68d826acc3e69d619fba619b587

Observation e2c16aa1-416e-4999-91bf-05b5c26ca7df · outbound

This paper cites A practical introduction to tensor networks: Matrix product states and projected entangled pair states,.

General framework for verifying pure quantum states in the adversarial scenario A practical introduction to tensor networks: Matrix product states and projected entangled pair states,

Reference 45

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source=pdf_text observed=2026-08-14T05:14:10.172496Z digest=sha256:4bd385c3f2489782a9e8ae8dec8c82393202d4f9f519528b09f6edb3eb022570

Observation 155250b3-8c4b-4244-89b4-5a1675138a16 · outbound

This paper cites an unresolved cited work.

General framework for verifying pure quantum states in the adversarial scenario Unresolved cited work

Reference 46

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No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-14T05:14:10.176464Z digest=sha256:75dfe40232e0968003ee94edca884388b587b2e29b7d775405af90448976b510

Observation 10b526b8-15c9-44b2-a116-935dfb792953 · outbound

This paper cites Quantum state tomography via compressed sensing,.

General framework for verifying pure quantum states in the adversarial scenario Quantum state tomography via compressed sensing,

Reference 47

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source=pdf_text observed=2026-08-14T05:14:10.180360Z digest=sha256:303a98eabb5f80e35764cac9e19ce3da6eb931567adf94449e6505ae48793c02

Observation db763371-b679-4183-bfc6-f1bef3ac1a29 · outbound

This paper cites Direct fidelity estimation from few Pauli measurements,.

General framework for verifying pure quantum states in the adversarial scenario Direct fidelity estimation from few Pauli measurements,

Reference 48

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source=pdf_text observed=2026-08-14T05:14:10.184577Z digest=sha256:1ff4a7ce968c97326803b2a22f8dee99b779cdddcc6293567227248f7efcb910

Observation 77408cef-023c-4a4e-85fa-b911fbdaf875 · outbound

This paper cites Self testing quantum apparatus,.

General framework for verifying pure quantum states in the adversarial scenario Self testing quantum apparatus,

Reference 49

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source=pdf_text observed=2026-08-14T05:14:10.188721Z digest=sha256:65a04a2a1e7e2f774897a4cce1b21e99d8f67ebb69feecc35ca73417909c2731

Observation 3a0e2f20-3eed-4a66-bc26-a7760f8ade4d · outbound

This paper cites Self-testing of quantum systems: a review.

General framework for verifying pure quantum states in the adversarial scenario Self-testing of quantum systems: a review

Reference 50

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source=pdf_text observed=2026-08-14T05:14:10.192827Z digest=sha256:3bf1452c0aadd26be77924942040a0b4c72e4b1574829a974bd19d4d2e483a7a

Observation 55a14f56-ab38-462b-9071-07a06e702ced · outbound

This paper cites A study of LOCC-detection of a maximally entangled state using hypothesis testing,.

General framework for verifying pure quantum states in the adversarial scenario A study of LOCC-detection of a maximally entangled state using hypothesis testing,

Reference 51

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source=pdf_text observed=2026-08-14T05:14:10.197035Z digest=sha256:9e312b92629b4fc078b23c5d8697590fce65907909f5053ac5be43f3e23f9d40

Observation 2f7f6a9f-6d12-4c29-9f0a-b0677381a151 · outbound

This paper cites Group theoretical study of LOCC-detectio n of maximally entangled states using hypothesis testing,.

General framework for verifying pure quantum states in the adversarial scenario Group theoretical study of LOCC-detectio n of maximally entangled states using hypothesis testing,

Reference 52

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source=pdf_text observed=2026-08-14T05:14:10.201200Z digest=sha256:e4fc4e8edfe9e963c5018a6a2190e0e4d441a9b73dec4b8dd9364865fbdbeb69

Observation 6f0accf5-643b-49a0-85c7-1eab5875fbc6 · outbound

This paper cites Re- liable quantum certification of photonic state prepara- tions,.

General framework for verifying pure quantum states in the adversarial scenario Re- liable quantum certification of photonic state prepara- tions,

Reference 53

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source=pdf_text observed=2026-08-14T05:14:10.205271Z digest=sha256:8f417668822857052abac892a70bab665ea5080f098796c86678acf5b6e1e0cd

Observation b7aa7302-c35a-41c3-ad52-be2ea502ffdc · outbound

This paper cites Verification of many-qubit states,.

General framework for verifying pure quantum states in the adversarial scenario Verification of many-qubit states,

Reference 54

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source=pdf_text observed=2026-08-14T05:14:10.209464Z digest=sha256:aa5508697f70700a8b6b0eac8a874cf5f08cc611993b9b13d308430f2b8dbd9b

Observation c07c8fab-44fc-436e-97c0-610c71c70c5e · outbound

This paper cites Optimal verification of entangled states with local measurements,.

General framework for verifying pure quantum states in the adversarial scenario Optimal verification of entangled states with local measurements,

Reference 55

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source=pdf_text observed=2026-08-14T05:14:10.213407Z digest=sha256:3e9fdea40c562de41568013e716e77d882b671e28e5ab8625131f64ed0dab536

Observation daaff52b-6895-4762-8442-cea2de43e3d2 · outbound

This paper cites Optimal verification and fidelity estimation of maximally entangled states,.

General framework for verifying pure quantum states in the adversarial scenario Optimal verification and fidelity estimation of maximally entangled states,

Reference 56

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source=pdf_text observed=2026-08-14T05:14:10.217425Z digest=sha256:6d5589c38d93768b07e3f8211e954aa4b3d155f71e75dde9e2f2d020eeaf9ce0

Observation d26936fb-3746-46da-9f8f-8ac15dece3b5 · outbound

This paper cites Efficient verification of bipartite pure states,.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of bipartite pure states,

Reference 57

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source=pdf_text observed=2026-08-14T05:14:10.221146Z digest=sha256:de50563ab877d421bd714692bfecb48bf9f3d24b752b24b410113d5dd764c648

Observation da9d0f43-f1b4-4194-9d8d-24defde2cddc · outbound

This paper cites Optimal verification of two- qubit pure states,.

General framework for verifying pure quantum states in the adversarial scenario Optimal verification of two- qubit pure states,

Reference 58

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source=pdf_text observed=2026-08-14T05:14:10.225195Z digest=sha256:b86cbf6e632b13cb3f204131f37dfe40494fb48fcb54850e05ca087d027d8c38

Observation b39de88a-8b17-463a-946e-5b8957dda809 · outbound

This paper cites Optimal verification of general bipartite pure states,.

General framework for verifying pure quantum states in the adversarial scenario Optimal verification of general bipartite pure states,

Reference 59

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source=pdf_text observed=2026-08-14T05:14:10.229034Z digest=sha256:bb333450560dbed3aaea6d7b634b4d0f00f201cf9702821d43f5baab78e6d3d3

Observation 524882e7-6224-4ba9-a2a7-86a3c1ba3a28 · outbound

This paper cites Optimal Verification of Greenberger-Horne-Zeilinger States.

General framework for verifying pure quantum states in the adversarial scenario Optimal Verification of Greenberger-Horne-Zeilinger States

Reference 60

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source=pdf_text observed=2026-08-14T05:14:10.233646Z digest=sha256:07903e1f515df4b11251f2eafeed730b6df0d5a06bd76fb288e670b3da9a34f9

Observation 5a5ba9cd-ab4e-4426-96c7-551ff14c4288 · outbound

This paper cites Efficient verification of hyper- graph states,.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of hyper- graph states,

Reference 61

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source=pdf_text observed=2026-08-14T05:14:10.238347Z digest=sha256:6cf0fc046209f382f404b85f4990ba512d93719ee78c94ebc82b1856e3922750

Observation 81511975-c610-4e14-81bb-6354c3437a76 · outbound

This paper cites Verifying commut- ing quantum computations via fidelity estimation of weighted graph states,.

General framework for verifying pure quantum states in the adversarial scenario Verifying commut- ing quantum computations via fidelity estimation of weighted graph states,

Reference 62

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source=pdf_text observed=2026-08-14T05:14:10.242453Z digest=sha256:1ec9bd112f358b57a624855267e0e11af439a16b3c83cb8eb08cdab17555e4da

Observation 34296826-7d05-491c-a394-ecac24941cc1 · outbound

This paper cites Efficient verification of Dicke states,.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of Dicke states,

Reference 63

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source=pdf_text observed=2026-08-14T05:14:10.246274Z digest=sha256:c8bc565298719783ca8427a36cae2f29db440308e00f86e988eb32af2951f2c9

Observation fb4a896c-5b70-494b-b6c3-d8e7df7a35ca · outbound

This paper cites Experimental Optimal Verification of Entangled States using Local Measurements.

General framework for verifying pure quantum states in the adversarial scenario Experimental Optimal Verification of Entangled States using Local Measurements

Reference 64

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No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-14T05:14:10.250338Z digest=sha256:d6f7629fdbedd2133c36d936c12caede48e6b62af23b93cf6727f118517c35e1

Observation d8830bef-fcab-410f-94ae-8e8e7f18436b · outbound

This paper cites Resource-efficient verification of quan- tum computing using Serfling’s bound,.

General framework for verifying pure quantum states in the adversarial scenario Resource-efficient verification of quan- tum computing using Serfling’s bound,

Reference 65

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source=pdf_text observed=2026-08-14T05:14:10.254560Z digest=sha256:633df45f9bd3d207fc82e849b3861aaa7750fda5485789f62a46904eef687922

Observation b9ad6cbe-b35c-4fc7-ac8d-f1370859e31f · outbound

This paper cites Efficient verification of pure quantum states in the adversarial scenario,.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of pure quantum states in the adversarial scenario,

Reference 66

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source=pdf_text observed=2026-08-14T05:14:10.258453Z digest=sha256:3f555eb485c7236dccd348d411b0651d06b7c806d1010f37c5eb83bccec56079

Observation 785919c8-7703-4a2f-8e0a-efee6e805c82 · outbound

This paper cites Single-copy entanglement de- tection,.

General framework for verifying pure quantum states in the adversarial scenario Single-copy entanglement de- tection,

Reference 67

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source=pdf_text observed=2026-08-14T05:14:10.262222Z digest=sha256:af63d1e4dfd42962fc9bbf7fd7121fabfbb6989949152ea84024470561c260aa

Observation 40ee4ba5-73ab-458e-b899-37161276d89a · outbound

This paper cites Efficient verification of quantum gates with local operations.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of quantum gates with local operations

Reference 68

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source=pdf_text observed=2026-08-14T05:14:10.266561Z digest=sha256:936e40b50251539cff68e1bc20b63bf8ae53247c03173f0c556de1f682df64e8

Observation b282f5fb-8be1-491c-8b21-125d3abd35a4 · outbound

This paper cites Efficient verification of quantum processes.

General framework for verifying pure quantum states in the adversarial scenario Efficient verification of quantum processes

Reference 69

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No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-14T05:14:10.271656Z digest=sha256:4026e349196333bc173d3ae80d3d04421d337f5f6cddd70876ee52b4007805fa

Observation 2fbe63a9-7278-4687-95ce-2da2ccf86120 · outbound

This paper cites All pure bipartite entangled states can be self-tested,.

General framework for verifying pure quantum states in the adversarial scenario All pure bipartite entangled states can be self-tested,

Reference 70

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source=pdf_text observed=2026-08-14T05:14:10.275964Z digest=sha256:891a05df317507614690a1701240d73c7135ff95b9d810ff43f21de641f2ede7

Observation 306bde6d-4b16-496d-857d-e4fb54b03574 · outbound

This paper cites Stabilizer codes can be realized as graph codes,.

General framework for verifying pure quantum states in the adversarial scenario Stabilizer codes can be realized as graph codes,

Reference 71

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source=pdf_text observed=2026-08-14T05:14:10.279867Z digest=sha256:c239298c77d95a6878d1aa414777f7eab5c051b77e9ae5861f298394db70cf96

Observation 004b9796-2f0e-484f-bc5f-971ab10a6459 · outbound

This paper cites Graphs, Quadratic Forms, and Quantum Codes.

General framework for verifying pure quantum states in the adversarial scenario Graphs, Quadratic Forms, and Quantum Codes

Reference 72

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source=pdf_text observed=2026-08-14T05:14:10.283893Z digest=sha256:877c2f3b93b5d7c66194e0bd8983ff160ccc85dbd06fbdec53b5aa95f66fe1f3

Observation 4ee5dafa-3243-44b4-a0f9-4a674f603b70 · outbound

This paper cites Weighted graph states and applications to spin chains, lattices and gases,.

General framework for verifying pure quantum states in the adversarial scenario Weighted graph states and applications to spin chains, lattices and gases,

Reference 73

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source=pdf_text observed=2026-08-14T05:14:10.288085Z digest=sha256:181980fa070ef55cf0f56c53448348bb6f6116918946fbef6b74421c82430329

Observation 1f49704d-1e12-4508-85a6-d4e1827f369d · outbound

This paper cites Self-testing multipartite entangled states through pro- jections onto two systems,.

General framework for verifying pure quantum states in the adversarial scenario Self-testing multipartite entangled states through pro- jections onto two systems,

Reference 74

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source=pdf_text observed=2026-08-14T05:14:10.291981Z digest=sha256:82b2296e404ac994b102206300494eef1d038d489d11bd94c629be89b73ec916

Observation 1e484695-7d90-41fa-9e80-ce933947e61c · outbound

This paper cites Self-testing Dicke states.

General framework for verifying pure quantum states in the adversarial scenario Self-testing Dicke states

Reference 75

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source=pdf_text observed=2026-08-14T05:14:10.296002Z digest=sha256:dc811989b61eab44c68b0a547e78634c934ad7e359268cc80ca281730b0a2df4

Pith citing papers

Observation c45e09a3-68c5-46ee-990e-d3bdc6b0ad35 · inbound

Verifying a stabilizer state with few observables but many shots cites this paper.

Verifying a stabilizer state with few observables but many shots General framework for verifying pure quantum states in the adversarial scenario

Reference 19

Resolution
verified exact
local_arxiv, observed 2026-08-11T10:31:52.040563Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

source=pdf_text observed=2026-08-11T10:31:51.989722Z digest=sha256:ae472a1068acff140099eecc131de695c2b570be0a53b73872aa8ca9c298306e