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Source: paper_references, paper_reference_links, observed 2026-07-13T02:44:54.955998Z
Paper Citation Record · LEDGER
As of 18 August 2026, this Paper Citation Record lists 62 of 62 outbound references and 0 inbound Pith citation observations for arXiv:2607.09477.
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Source: paper_references, paper_reference_links, observed 2026-07-13T02:44:54.955998Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
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62 of 62 outbound references displayed
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Observation 8da1fd82-84e9-43d5-a979-cc7c6e2f4129 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 1
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Observation ffc8ddd3-9958-4199-8732-539a086deec2 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 2
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Observation 9cf4293d-0a07-45ae-97da-1a047fc00759 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation For quantum systems, the native description of a mea- surement is a POVM (positive operator valued measure)
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Observation 07da7214-ed24-4ee2-8f62-45d9a0b9a2a8 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation canonical form
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Observation bd62ab18-684c-4f92-8d41-74e597f30836 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation By definition, all correlated equilibria are belief-invariant, and they also have a canonical form wheresi ∈ S i :=A Ti i
Reference 5
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Observation 68c4120e-6ee3-4264-ba89-f4b5e3a18b88 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation The resulting behaviour inherits this product form: Q(a|t) =Q 1(a1|t1)· · ·Q n(an|tn),(2) and we denote the set of behaviours of Nash equilibria Nash(G)⊂Corr(G)
Reference 6
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Observation 1b8dd488-5fb7-43a7-9e9e-e8aed52c9a77 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 7
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Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
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Playing Bayesian games better with separable quantum states than with any classical correlation Corr(eGΛ) max.V
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Observation ddc7e2bd-e619-46f0-8ed2-1e872e651cd1 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation In case of their individual input type being0, they measure their bit in theXbasis and otherwise in theYbasis
Reference 10
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Observation a9110a1b-d52d-42c1-8082-36e33098ff7f · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation The optimal quantum strategy of the CHSH game famously beats the classical maximum ex- pected payoff by achieving the Tsirelson bound: τ(CHSH) = cos 2 π 8 ≈0.85
Reference 11
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Observation fd62e802-19be-4190-a7a9-9657263e76c9 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation We have thus verified that the new advice yields indeed the optimal strategy for Alice, and is hence a quantum correlated equilibrium for the modified game ^CHSH Λ
Reference 12
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Observation fb8a35a1-d8f0-44e9-9af5-cda88c68da7f · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation classical
Reference 13
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Observation 7fe86319-4f4e-406b-a9d3-ebde63b4eea8 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Abbott, Mehdi Mhalla, and Pierre Pocreau
Reference 14
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Observation 6f5c8b17-9bc0-4640-a725-1fbd7280627c · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 15
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Observation 6b1f6326-9f2b-4641-8538-fb8a454af3fa · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Belief- Invariant and Quantum Equilibria in Games of Incomplete Information.Theoretical Computer Science 895:151-177, 2021
Reference 16
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Observation ee0e030a-28ab-4529-ae3c-0179722feeb8 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 17
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Observation 269dee5a-3311-49c3-8d54-9c461f3f7dbe · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 18
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Observation e76077a2-8dcd-48f4-86ef-fe0a9a4c9c96 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 19
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Observation 39768ae5-002f-4074-9c70-2c2009ed22ea · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Bennett and Gilles Brassard
Reference 20
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Observation ff8e6073-46a3-41a0-a954-50e371038d51 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Three-player conflicting interest games and nonlocality.Quantum Informa- tion Processing16:186, 2017
Reference 21
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Observation b231fa7d-5d71-4f6e-bb57-710db5458323 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Examining the effect of quantum strategies on symmetric conflicting inter- est games.International Journal of Quantum Information15(5):1750033, 2017
Reference 22
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Observation 937301fe-04ef-43b7-bbe0-ca32bcfc3a00 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Bell non- locality.Reviews of Modern Physics86:419-478, 2014
Reference 23
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Observation 594fdf1b-abe0-40a0-80fc-2ae7dec6e196 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Quantum steering: a review with focus on semidefinite pro- gramming.Reports on Progress in Physics80(2):024001, 2016
Reference 24
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Observation 273511ef-c0af-4ce7-87ad-0433644bdcec · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Treball Final de Grau en F´ısica (BSc thesis), Department of Physics, Universitat Aut`onoma de Barcelona, June 2021
Reference 25
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Observation 12723a1a-e23c-4fe8-b654-ec2a9b61ca14 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Quantum advantage for Bayesian games from quantum pseudo-telepathy.In preparation, 2026
Reference 26
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Observation 8f8c4645-e5a2-42f7-ade1-29aca7323db6 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 27
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Observation 6278219f-c279-47b6-b714-1adbc2b4ee1a · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Clauser, Michael A
Reference 28
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Observation 165ebeef-d171-4aa2-8582-4e7bf75c4ed1 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Bellefontaine, St
Reference 29
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Observation 957752eb-37a9-42e1-9f63-d1332264163c · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Can quantum-mechanical description of physical reality be considered complete?Physical Review47:777-780, 1935
Reference 30
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Observation bc49b201-e8bc-4929-a5ee-e5907b8a4a11 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Five Legitimate Definitions of Correlated Equilibrium in Games with Incomplete Information.Theory and Decision35:277-310, 1993
Reference 31
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Observation 8a04d68c-721b-4ff4-8b08-8f0d3b876087 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Correlated Equilibrium in Games with Incomplete Information Revisited.Theory and Decision61:329-344, 2006
Reference 32
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Observation 393622c6-0e31-40fb-ac07-b176c27faa32 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Bell’s inequality holds for all non-product states.Physics Letters A154(5–6):201-202, 1991
Reference 33
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Observation 2ea619d8-35ee-416a-af0c-2ab0679e007b · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Greenberger, Michael A
Reference 34
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Observation 8f98c1e5-6d6a-48e7-8047-9ca76609c9ce · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation How Quantum Infor- mation can Improve Social Welfare.IEEE Journal on Selected Areas in Information Theory1(2):445-453, 2020
Reference 35
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Observation ca4a5435-7330-4c2b-9719-6b65129087e8 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Games with Incomplete Information Played by ‘Bayesian’ Players. Parts I–III
Reference 36
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Observation f938f122-4b83-4710-b35a-68204e7e1960 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Quantum entangle- ment.Reviews of Modern Physics81:865-942,2009
Reference 37
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Observation 440ba2d4-032d-474b-a9aa-2e68ad309265 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Cambridge University Press, Cambridge, 2006
Reference 38
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Observation b8985fc0-1228-4e45-98b1-b3c73946869e · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Correlated equilibria of classical strategic games with quantum signals.Inter- national Journal of Quantum Information03(01):183-188, 2005
Reference 39
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Observation 4d7ce7f0-493f-4da7-ac53-c6240d2afa33 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Signaling and mediation in games with common interests.Games and Economic Behavior68(2):670-682, 2010
Reference 40
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Observation 19e9e0e0-4053-4e0d-8b19-528b6720a95a · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Quantum advantage beyond entanglement in Bayesian game theory.Journal of Physics A: Mathematical and Theoretical57:065303, 2024
Reference 41
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Observation 0f87acdd-49ee-4ad0-835f-dd95ebb6a5d8 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Cambridge University Press, Cam- bridge, 2013
Reference 42
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Observation 26627824-74ea-41c9-a873-2ba74b104f49 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation David Mermin
Reference 43
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Observation 474793fb-aa1f-4325-a2fd-7753065cb235 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 44
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Observation 80fd2afd-f159-4d45-85c7-472e033974d5 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation On the geometry of Nash equilibria and correlated equilibria.International Journal of Game Theory32:443-453, 2003
Reference 45
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Observation 1a9ac8c7-4b19-4f6e-b0ec-34e43885f3aa · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Zur Theorie der Gesellschaftsspiele.Mathematische Annalen100:295-320, 1928
Reference 46
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Observation ea533a4e-9a7f-4b49-90e4-3d792b855349 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 47
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Observation cea88908-1167-47d2-9653-71c2aa83e80b · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Vazirani (eds.).Algorithmic Game Theory
Reference 48
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Observation f0973be9-580c-4f56-be6f-1adc5ac095de · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Nonlocality and conflicting interest games.Physical Review Letters114:020401, Jan 2015
Reference 49
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Observation f3786779-e9d9-4185-8485-784121d5088e · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Incompatible results of quantum measurements.Physics Letters A151(3–4):107-108, 1990
Reference 50
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Observation e2be58cf-cf5b-43e7-b213-9f5d4b41e9c3 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Generic quantum nonlocality.Physics Letters A166(5-6):293-297, 1992
Reference 51
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Observation a6ef9f20-1814-4aa5-9388-ecb6cbf204c7 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Quantum nonlocality as an axiom.Foundations of Physics 24(3):379-385, 1994
Reference 52
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Observation 8cc36de4-7af2-4fec-9da9-96c5696b2bfe · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation PhD thesis, University of Michi- gan, 1951
Reference 53
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Observation 375d7374-4e88-4c82-ac6b-f1db7fe7c715 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Oxford Graduate Texts, Oxford University Press, Oxford, 2019
Reference 54
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Observation 091048fd-aa18-447d-bdac-18077fa9e59a · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Discussion of Probability Relations Between Separated Systems.Proceedings of the Cambridge Philosophical Society31(4):555-563, 1935
Reference 55
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Observation 1a8bf9d7-b289-42ab-aba6-6aef1aeeb9e0 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Die gegenw ¨artige Situation in der Quantenmechanik.Naturwissenschaften 23(48):807-821, (49):823-828, (50):844-849, 1935
Reference 56
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Observation e0e0745f-7213-4091-a4a6-aea3ad84c6b7 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation MSc thesis, School of Physical Sciences, NISER Bhubaneswar, May 2023
Reference 57
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Observation 0883b007-9bcb-40f8-a2bc-5dd3fc4eff2c · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Tsirelson
Reference 58
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Observation 0a52cbf3-8d07-4058-91b6-cde1c3d5a7df · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 59
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Observation 95c48503-6f31-4394-b8a5-ce0b2edd60b9 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Unresolved cited work
Reference 60
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Observation 2c0022fa-8079-441e-b901-81479f6d1a37 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation Steering, Entanglement, Nonlocality, and the EPR Paradox
Reference 61
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Observation bb2fa21f-fb2a-4841-9c47-e171a5f7c5f0 · outbound
Playing Bayesian games better with separable quantum states than with any classical correlation autonomous
Reference 62
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