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Paper Citation Record · LEDGER

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State

As of 20 August 2026, this Paper Citation Record lists 51 of 51 outbound references and 0 inbound Pith citation observations for arXiv:2607.21288.

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

pith.paper-citation-record.v1
2607.21288 v1

Coverage vector

measured 51 of 51 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-01T08:06:51.198524Z

measured 51 of 51 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-20T06:33:59.587034+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

51 of 51 outbound references displayed

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Outbound references

Observation 734827ad-ec8e-4cf9-bfce-fed6d6493a01 · outbound

This paper cites Self testing quantum apparatus.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self testing quantum apparatus

Reference 1

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source=pdf_text observed=2026-08-01T08:06:47.972901Z digest=sha256:27849c3a6c537a001dc4b477b7167679abd31c70f91c39048fdd87a64955d74b

Observation 1ca59cf4-3223-487a-a5f9-54959de2beb3 · outbound

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

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self-testing of quantum systems: a review

Reference 2

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source=pdf_text observed=2026-08-01T08:06:48.031689Z digest=sha256:f4cdc444e91243c862fa4f1be8de8c5628d8487f957e7c0a410468ebb0f05b0f

Observation 3fbf66b8-ced2-4033-b952-2f592cad5fcf · outbound

This paper cites Sum-of-squares decompositions for a family of CHSH-like inequalities and their application to self-testing.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Sum-of-squares decompositions for a family of CHSH-like inequalities and their application to self-testing

Reference 3

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Observation 1a8d7e9d-0831-46f0-af71-5fe414a9d298 · outbound

This paper cites Bounding the set of quantum correlations.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Bounding the set of quantum correlations

Reference 4

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source=pdf_text observed=2026-08-01T08:06:48.166995Z digest=sha256:e4ea3fc4fda9db5341075e09630bf557f487ca7732ecd376c9d9dbf302829ec2

Observation 177400fa-ec24-4b41-90b6-04c9de999e3e · outbound

This paper cites A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations

Reference 5

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source=pdf_text observed=2026-08-01T08:06:48.213253Z digest=sha256:e6d0dfc85151598d765ae928c579c07a7fd821de915da6116d3cbf73b8a9afff

Observation 96386ea8-85f1-4227-b90c-9748443be083 · outbound

This paper cites Physical characterization of quantum devices from nonlocal correlations.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Physical characterization of quantum devices from nonlocal correlations

Reference 6

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source=pdf_text observed=2026-08-01T08:06:48.277191Z digest=sha256:832a861ebd3a0e220e842353914fc65b3d0d0869159a7248f3d3e59fda7138b6

Observation 1d009417-059d-4751-8d1e-b907a574518f · outbound

This paper cites Analytic and nearly optimal self-testing bounds for the Clauser-Horne-Shimony-Holt and Mermin inequalities.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Analytic and nearly optimal self-testing bounds for the Clauser-Horne-Shimony-Holt and Mermin inequalities

Reference 7

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Observation 0962cd84-5c65-4992-9d0c-6631a73cbc13 · outbound

This paper cites Robust self testing of the 3-qubit $W$ state.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Robust self testing of the 3-qubit $W$ state

Reference 8

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Observation 94c1ffef-ce61-4ecd-872c-e8140a2a67a6 · outbound

This paper cites Device-independent tomography of multipartite quantum states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Device-independent tomography of multipartite quantum states

Reference 9

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Observation ab108e50-f72b-4ec3-be82-a1bd84d8d476 · outbound

This paper cites Self-testing using only marginal information.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self-testing using only marginal information

Reference 10

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Observation 1809b181-4a34-49f5-ac94-2ffe882296ad · outbound

This paper cites Self-testing of symmetric three-qubit states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self-testing of symmetric three-qubit states

Reference 11

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Observation b7796779-c8d6-4d47-b720-bcff372c7153 · outbound

This paper cites Self-testing graph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self-testing graph states

Reference 12

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source=pdf_text observed=2026-08-01T08:06:48.646925Z digest=sha256:41a9c231f188943dcc875a151c72f204534b198df53a10fd2e2534982e0b5fc1

Observation 13742646-fec1-4520-9a02-89bf69669eb3 · outbound

This paper cites Scalable Bell inequalities for qubit graph states and robust self-testing.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Scalable Bell inequalities for qubit graph states and robust self-testing

Reference 13

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source=pdf_text observed=2026-08-01T08:06:48.717529Z digest=sha256:0414f08715dcc6b8b2b17e437dce3f2f82bc4970d8a1617ad0707e520154b98e

Observation 22111db0-ff6f-42ba-9a3c-9ae1782f0b75 · outbound

This paper cites Multipartite Entanglement and Global Information.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Multipartite Entanglement and Global Information

Reference 14

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Observation e2e930cf-3e97-4928-bb0e-9c20508c0e13 · outbound

This paper cites Encoding Hypergraphs into Quantum States.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Encoding Hypergraphs into Quantum States

Reference 15

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source=pdf_text observed=2026-08-01T08:06:48.816137Z digest=sha256:db9ef61a9811404042abfdde617e21470ea48fe836b446503d518f1fe1d0a0e0

Observation 264cfb0e-64b2-4337-9bf2-a2444c9bd76d · outbound

This paper cites Quantum Hypergraph States.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Quantum Hypergraph States

Reference 16

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source=pdf_text observed=2026-08-01T08:06:48.925773Z digest=sha256:e00694e0b5fe0daba2ca27fa3092eb184b43733b6910aa0ca9264d0dc19a4524

Observation eb0456d2-093e-4e99-815f-06bab9cd2412 · outbound

This paper cites Entanglement and nonclassical properties of hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Entanglement and nonclassical properties of hypergraph states

Reference 17

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source=pdf_text observed=2026-08-01T08:06:48.982779Z digest=sha256:6400ba7f0cb4ac15306c5080fdaf41bc50043eeb4236c353c01e2132888f184e

Observation 33422fe7-0a3e-4637-8d57-2e5c3e5e9ce6 · outbound

This paper cites Local unitary symmetries of hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Local unitary symmetries of hypergraph states

Reference 18

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Observation dedef023-6b24-4486-9f13-c69a54137f61 · outbound

This paper cites Local Pauli stabilizers of symmetric hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Local Pauli stabilizers of symmetric hypergraph states

Reference 19

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Observation e4d8b24d-c310-48ee-b5e8-eae9cd587a3e · outbound

This paper cites Multipartite Entanglement and Hypergraph states of three qubits.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Multipartite Entanglement and Hypergraph states of three qubits

Reference 20

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Observation f36a58a1-70bc-4ff3-a711-00c9d8347221 · outbound

This paper cites Multipartite entanglement detection for hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Multipartite entanglement detection for hypergraph states

Reference 21

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source=pdf_text observed=2026-08-01T08:06:49.229080Z digest=sha256:a09da829de4c540b8c8c67db81623d7fa33483155022b941e911f7ecad3dc8fc

Observation 4de7e2ed-8682-49b9-8346-82d25c848780 · outbound

This paper cites Hierarchy of universal entanglement in 2D measurement-based quantum computation.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Hierarchy of universal entanglement in 2D measurement-based quantum computation

Reference 22

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source=pdf_text observed=2026-08-01T08:06:49.280454Z digest=sha256:f8c15e312ef4df9a20c3cd334476502a15d02ea444c844ac36861364fd92a175

Observation 1c7de8cd-4224-4518-91f1-3ee93c0215d5 · outbound

This paper cites Latent Computational Complexity of Symmetry-Protected Topological Order with Fractional Symmetry.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Latent Computational Complexity of Symmetry-Protected Topological Order with Fractional Symmetry

Reference 23

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source=pdf_text observed=2026-08-01T08:06:49.336701Z digest=sha256:2f1d7765dd9671b0e6e3f2451b87ae7b24595701bf07229802df6522142905bc

Observation 882e0a8e-4093-4a1c-9fe1-117b86fff209 · outbound

This paper cites Quantum supremacy in constant-time measurement-based computation: A unified architecture for sampling and verification.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Quantum supremacy in constant-time measurement-based computation: A unified architecture for sampling and verification

Reference 24

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Observation a4cc07e1-a78b-46ba-8adb-d366f5c3227e · outbound

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

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Changing the circuit-depth complexity of measurement-based quantum computation with hypergraph states

Reference 25

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source=pdf_text observed=2026-08-01T08:06:49.448279Z digest=sha256:a6b376539739498d2ed5ee4972544c50ff8d2fe992615ef5501a146f9b6ccf91

Observation 62a6562f-486c-4eab-9dfc-b350bb61c849 · outbound

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

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Quantum computational universality of hypergraph states with Pauli-X and Z basis measurements

Reference 26

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Observation 3f2d42a1-ec5b-4868-b9c6-5d381f93d042 · outbound

This paper cites Universal quantum computation with ideal Clif- ford gates and noisy ancillas.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Universal quantum computation with ideal Clif- ford gates and noisy ancillas

Reference 27

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source=pdf_text observed=2026-08-01T08:06:49.553328Z digest=sha256:c2086b536d1d6480c4919d423b1a55ac41047540d9c872f5dc0a6b80d5ba87a2

Observation 55316a55-8add-4381-ab2f-f74e0f993f35 · outbound

This paper cites Novel constructions for the fault-tolerant Toffoli gate.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Novel constructions for the fault-tolerant Toffoli gate

Reference 28

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source=pdf_text observed=2026-08-01T08:06:49.604142Z digest=sha256:c00811dafb14fec388418b134fb25c0f3c0431ac48415eafb57f815c3eabf71d

Observation ab6020a8-e531-441f-b76f-efcdd7c3b718 · outbound

This paper cites Distilling one-qubit magic states into Toffoli states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Distilling one-qubit magic states into Toffoli states

Reference 29

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source=pdf_text observed=2026-08-01T08:06:49.660332Z digest=sha256:3ace2ab45e0644a5d446844f61099e00495711b9caba75bdd0965175613e7169

Observation 7f5c886b-6857-434c-96c7-0e8d3222d32b · outbound

This paper cites Codes and Protocols for Distilling $T$, controlled-$S$, and Toffoli Gates.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Codes and Protocols for Distilling $T$, controlled-$S$, and Toffoli Gates

Reference 30

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Observation 8433c638-0652-4b61-b847-c6ad8a87f5ec · outbound

This paper cites Application of a resource theory for magic states to fault-tolerant quantum computing.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Application of a resource theory for magic states to fault-tolerant quantum computing

Reference 31

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Observation 6e8d2f80-4ff4-4d66-8e1b-eeba6e46b1a2 · outbound

This paper cites Magic of quantum hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Magic of quantum hypergraph states

Reference 32

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source=pdf_text observed=2026-08-01T08:06:49.828645Z digest=sha256:c0c497dfc32e07b7860917d1c5dfd9d1050e2ebd006841d2d2b1cdd0f18c89ca

Observation ca893fc3-0123-46d8-815b-bb0bf1ec95a8 · outbound

This paper cites Demonstrationofhypergraph- state quantum information processing.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Demonstrationofhypergraph- state quantum information processing

Reference 33

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Observation 9f965686-502c-4bb1-834a-bd0415877a38 · outbound

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

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Verifiable measurement-only blind quantum computing with stabilizer testing

Reference 34

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Observation a1e7a48f-da09-4a7c-8cfa-4aeefddf065a · outbound

This paper cites Verified measurement-based quantum computing with hypergraph states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Verified measurement-based quantum computing with hypergraph states

Reference 35

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Observation bd1f766a-f4d1-4c58-9306-48715fdb445a · outbound

This paper cites Verification of Many-Qubit States.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Verification of Many-Qubit States

Reference 36

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Observation 2930e8be-82b3-48fe-8c20-448084b61db6 · outbound

This paper cites Optimalverificationofentangled states with local measurements.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Optimalverificationofentangled states with local measurements

Reference 37

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Observation 2a997fac-9e89-4018-8429-a6833b15598d · outbound

This paper cites Efficient Verification of Hypergraph States.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Efficient Verification of Hypergraph States

Reference 38

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source=pdf_text observed=2026-08-01T08:06:50.198629Z digest=sha256:08c48e60419df5ddbfd6c18ec5d8235d5499acbf8755df413bae31764b9130db

Observation ced74583-026c-4b28-baa8-3df07580ec99 · outbound

This paper cites Efficient Verification of Pure Quantum States in the Adversarial Scenario.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Efficient Verification of Pure Quantum States in the Adversarial Scenario

Reference 39

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source=pdf_text observed=2026-08-01T08:06:50.262858Z digest=sha256:f6e3e4db276f13880060020f4329825d186ac0161ddc64375a25dded5d5076ed

Observation 6c6aaee7-594a-4d3f-9fe0-1874028418f9 · outbound

This paper cites Self-testing of a single quantum device under computational assumptions.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Self-testing of a single quantum device under computational assumptions

Reference 40

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source=pdf_text observed=2026-08-01T08:06:50.326874Z digest=sha256:24db4fbb0001f47cf70af0ba5d9943fcef6cdc1362a1cd68e970694c8109c9f1

Observation f30d0ffb-9597-4e30-a38a-b80b2b6909b2 · outbound

This paper cites Computational self-testing for entangled magic states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Computational self-testing for entangled magic states

Reference 41

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source=pdf_text observed=2026-08-01T08:06:50.392949Z digest=sha256:a9d14599a2c2a1b099e94163573b68b8673a4a770bd9f1ea3823887db9a41983

Observation 93285b4e-66a1-4b6c-8378-2cb5dc4c2b25 · outbound

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

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Extreme violation of local realism in quantum hypergraph states

Reference 42

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:50.458380Z digest=sha256:63e6b3defa4d158e811aae7d5ed1b57651e32f64abee18faf3e614104f79cb33

Observation e95fda1e-8e9a-4b1f-a4d2-bc5123ca0eb8 · outbound

This paper cites Symmetric hypergraph states: entanglement quantification and robust Bell nonlocality.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Symmetric hypergraph states: entanglement quantification and robust Bell nonlocality

Reference 43

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source=pdf_text observed=2026-08-01T08:06:50.520676Z digest=sha256:74d45f36988a1f2ff98f09159bd0d6a879f7cd88e64cd7520b00d83ce1998dfb

Observation 85b3cba4-bcd3-4ea2-8210-4542fb1ed8e7 · outbound

This paper cites All Pure Bipartite Entangled States can be Self-Tested.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State All Pure Bipartite Entangled States can be Self-Tested

Reference 44

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source=pdf_text observed=2026-08-01T08:06:50.586103Z digest=sha256:beb2d9c9f1b0125dac3a8d130de3243aa1b7b14d0c32bdd2515a59136aa590d4

Observation 3da2af5b-8b3f-4606-a6c6-d9f32e42cd06 · outbound

This paper cites All pure multipartite entangled states of qubits can be self-tested up to complex conjugation.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State All pure multipartite entangled states of qubits can be self-tested up to complex conjugation

Reference 45

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:50.653590Z digest=sha256:f7d982db5974430cb6d1e068878262b07f2cadab6246cc868c51e0c1a6029be3

Observation 78c85396-2afe-4fe2-bf64-4aef8bca9c41 · outbound

This paper cites Scalable self-testing of generic multipartite quantum states.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Scalable self-testing of generic multipartite quantum states

Reference 46

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no resolver link, observed 2026-08-01T08:06:50.724121Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:50.724121Z digest=sha256:715bd8700fcc7fe80dc1223d34b08d2adbf695911e70a7267db583b91a2cbf01

Observation 35fcf8a2-f880-4820-baff-812c8132f1b2 · outbound

This paper cites Tight and self-testing multipartite quantum Bell inequalities from the renormalization group.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Tight and self-testing multipartite quantum Bell inequalities from the renormalization group

Reference 47

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:50.787913Z digest=sha256:a5070c651ed95d8cb2965e700139d69a634fa399e9c6ee9cdb80218823e627d1

Observation a68c4166-0005-4374-b150-06c88e01f862 · outbound

This paper cites Graph-Theoretic Framework for Self-Testing in Bell Scenarios.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Graph-Theoretic Framework for Self-Testing in Bell Scenarios

Reference 48

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:50.888390Z digest=sha256:54d710d1a2f0d4702ebad9259bee55a1ead3fb02f7a3fdd9d87c14c91fda25b3

Observation 98205d1c-6f39-4f0f-8264-f83426ee2fb3 · outbound

This paper cites Custom Bell inequalities from formal sums of squares.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Custom Bell inequalities from formal sums of squares

Reference 49

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source=pdf_text observed=2026-08-01T08:06:50.963752Z digest=sha256:b9bf5b73298e0784b9c83ef23be83c19d788e1f2059f7bbc78316463fc7b9969

Observation d6d00416-edc1-4fb4-b315-526e941ec888 · outbound

This paper cites Geometry of the set of quantum correlations.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Geometry of the set of quantum correlations

Reference 50

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:51.034131Z digest=sha256:5a7af9ef4e560180b1acf1161f926db3606fc62657b0da3d9ccc0585a4f21447

Observation 56970d51-fdc8-44f2-a9e0-faee083f2c2a · outbound

This paper cites Quantum correlations on the no-signaling boundary: self-testing and more.

Device-Independent Self-Testing of the Three-Qubit CCZ Hypergraph State Quantum correlations on the no-signaling boundary: self-testing and more

Reference 51

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Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T08:06:51.198524Z digest=sha256:c4da499a5d7d618ae6760d11a71a5cc0a382bf4ecb8a526e1044f7cd26aa8a7b

Pith citing papers

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