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Quantum telepathy is the phenomenon where two non-communicating parties can exhibit correlated behaviors that are impossible to achieve using classical resources.
Can quantum-mechanical description of physical reality be considered complete?
Albert Einstein, Boris Podolsky, and Nathan Rosen · 1935
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On the Einstein Podolsky Rosen paradox
John S Bell · 1964
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Proposed experiment to test local hidden-variable theories
John F Clauser, Michael A Horne, Abner Shimony, and Richard A Holt · 1969
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Experimental test of local hidden-variable theories
Stuart J Freedman and John F Clauser · 1972
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Experimental test of local hidden-variable theories
Edward S Fry and Randall C Thompson · 1976
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Quantum generalizations of Bell’s inequality
Boris S Cirel’son · 1980
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Experimental tests of realistic local theories via bell’s theorem
Alain Aspect, Philippe Grangier, and Gérard Roger · 1981
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Experimental realization of einstein-podolsky-rosen-bohm gedankenexperiment: A new violation of bell’s inequalities
Alain Aspect, Philippe Grangier, and Gérard Roger · 1982
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Hidden variables, joint probability, and the bell inequalities
Arthur Fine · 1982
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New techniques and ideas in quantum measurement theory
ND Mermin · 1986
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The range of quantum probability
Itamar Pitowsky · 1986
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Problems of the theory probability distributions ix. zapiski math. inst. steklov (lomi), 142: 174–194, 1985. english translation in quantum analogues of the bell inequalities. the case of two spatially separated domains
Boris S Tsirelson · 1987
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Empirical two-point correlation functions
Lawrence J Landau · 1988
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The c*-algebra generated by two projections
Iain Raeburn and Allan M Sinclair · 1989
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Teleporting an unknown quantum state via dual classical and einstein-podolsky-rosen channels
Charles H Bennett, Gilles Brassard, Claude Crépeau, Richard Jozsa, Asher Peres, and William K Wootters · 1993
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Strengthening the bell theorem: conditions to falsify local realism in an experiment
Marek Zukowski, Dagomir Kaszlikowski, Adam Baturo, and Jan-Åke Larsson · 1999
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Violations of local realism by two entangled n-dimensional systems are stronger than for two qubits
Dagomir Kaszlikowski, Piotr Gnaciński, Marek Żukowski, Wieslaw Miklaszewski, and Anton Zeilinger · 2000
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Strict detector-efficiency bounds for n-site clauser-horne inequalities
Jan-Åke Larsson and Jason Semitecolos · 2001
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Long-distance quantum communication with atomic ensembles and linear optics
L-M Duan, Mikhail D Lukin, J Ignacio Cirac, and Peter Zoller · 2001
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Maximum efficiency of a linear-optical bell-state analyzer
John Calsamiglia and Norbert Lütkenhaus · 2001
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Encyclopedia of materials: science and technology
KH Jürgen et al Buschow · 2001
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On the power of unique 2-prover 1-round games
Subhash Khot · 2002
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Nonlocality, closing the detection loophole, and communication complexity
Serge Massar · 2002
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Quantum nonlocality, bell inequalities, and the memory loophole
Jonathan Barrett, Daniel Collins, Lucien Hardy, Adrian Kent, and Sandu Popescu · 2002
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Quantum solution of coordination problems
Bernardo A Huberman and Tad Hogg · 2003
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Violation of local realism versus detection efficiency
Serge Massar and Stefano Pironio · 2003
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Universal entanglement transformations without communication
Wim van Dam and Patrick Hayden · 2003
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Necessary and sufficient condition for quantum-generated correlations
Ll Masanes · 2003
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Consequences and limits of nonlocal strategies
Richard Cleve, Peter Hoyer, Benjamin Toner, and John Watrous · 2004
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Interconnect-centric design for advanced SoC and NoC
Jari Nurmi, Jouni Isoaho, Axel Jantsch, and Hannu Tenhunen · 2004
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Quantum pseudo-telepathy
Gilles Brassard, Anne Broadbent, and Alain Tapp · 2005
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Tsirelson bounds for generalized clauser-horne-shimony-holt inequalities
Stephanie Wehner · 2006
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Bell inequalities for continuous-variable correlations
Eric G Cavalcanti, Christopher J Foster, Margaret D Reid, and Peter D Drummond · 2007
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Necessary and sufficient detection efficiency for the mermin inequalities
Adán Cabello, David Rodríguez, and Ignacio Villanueva · 2008
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Systems and methods for coordinating decisions between non-communicating parties, December 17 2020
Mario Szegedy, Dawei Ding, and Yaoyun Shi · 2020
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Ultra-high-rate nonclassical light source with 50 ghz-repetition-rate mode-locked pump pulses and multiplexed single-photon detectors
Kentaro Wakui, Yoshiaki Tsujimoto, Mikio Fujiwara, Isao Morohashi, Tadashi Kishimoto, Fumihiro China, Masahiro Yabuno, Shigehito Miki, Hirotaka Terai, Masahide Sasaki, et al · 2020
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Experimental demonstration of memory-enhanced quantum communication
Mihir K Bhaskar, Ralf Riedinger, Bartholomeus Machielse, David S Levonian, Christian T Nguyen, Erik N Knall, Hongkun Park, Dirk Englund, Marko Lončar, Denis D Sukachev, et al · 2020
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SciPy 1.0: Fundamental Algorithms for Scientific Computing in Python
Pauli Virtanen, Ralf Gommers, Travis E. Oliphant, Matt Haberland, Tyler Reddy, David Cournapeau, Evgeni Burovski, Pearu Peterson, Warren Weckesser, Jonathan Bright, Stéfan J. van der Walt, Matthew Brett, Joshua Wilson, K. Jarrod Millman, Nikolay Mayorov, Andrew R. J. Nelson, Eric Jones, Robert Kern, Eric Larson, C J Carey, İlhan Polat, Yu Feng, Eric W. Moore, Jake VanderPlas, Denis Laxalde, Josef Perktold, Robert Cimrman, Ian Henriksen, E. A. Quintero, Charles R. Harris, Anne M. Archibald, Antônio H. Ribeiro, Fabian Pedregosa, Paul van Mulbregt, and SciPy 1.0 Contributors · 2020
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Can quantum mechanics help distributed computing?
Anne Broadbent and Alain Tapp · 2008
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Parallel repetition in projection games and a concentration bound
Anup Rao · 2008
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A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations
Miguel Navascués, Stefano Pironio, and Antonio Acín · 2008
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Unbounded violation of tripartite bell inequalities
David Pérez-García, Michael M Wolf, Carlos Palazuelos, Ignacio Villanueva, and Marius Junge · 2008
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A composite parameterization of unitary groups, density matrices and subspaces
Christoph Spengler, Marcus Huber, and Beatrix C Hiesmayr · 2010
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Extremal quantum correlations and cryptographic security
Torsten Franz, Fabian Furrer, and Reinhard F Werner · 2011
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Interface between trapped-ion qubits and traveling photons with close-to-optimal efficiency
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Circuit quantum electrodynamics
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Multiplexed control of spin quantum memories in a photonic circuit
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