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The Cost of Exactly Simulating Quantum Entanglement With Classical Communication (1999)  (Make Corrections)  (7 citations)
Gilles Brassard, Richard Cleve, Alain Tapp



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Abstract: We investigate the amount of communication that must augment classical local hidden variable models in order to simulate the behaviour of entangled quantum systems. We consider the scenario where a bipartite measurement is given from a set of possibilities and the goal is to obtain exactly the same correlations that arise when the actual quantum system is measured. We show that, in the case of a single pair of qubits in a Bell state, a constant number of bits of communication is always... (Update)

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BibTeX entry:   (Update)

G. Brassard, R. Cleve, and A. Tapp. The cost of exactly simulating quantum entanglement with classical communication. Physical Review Letters, 83(9):1874--1877, 1999. quant-ph/9901035. http://citeseer.ist.psu.edu/brassard99cost.html   More

@misc{ brassard99cost,
  author = "G. Brassard and R. Cleve and A. Tapp",
  title = "The cost of exactly simulating quantum entanglement with classical communication",
  text = "G. Brassard, R. Cleve, and A. Tapp. The cost of exactly simulating quantum
    entanglement with classical communication. Physical Review Letters, 83(9):1874--1877,
    1999. quant-ph/9901035.",
  year = "1999",
  url = "citeseer.ist.psu.edu/brassard99cost.html" }
Citations (may not include all citations):
126   Rapid solution of problems by quantum computation (context) - Deutsch, Jozsa - 1992
41   the Einstein-Podolsky-Rosen paradox (context) - Bell - 1964
18   Proposed experiment to test local hidden-variable theories (context) - Clauser, Horne et al. - 1969
13   Forbidden intersections (context) - Frankl, Rodl - 1987
7   Quantum vs. classical communication and computation - Buhrman, Cleve et al. - 1998

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Quantum Algorithms Revisited - Cleve, Ekert, Macchiavello, Mosca (1997)   (Correct)
Schumacher's Quantum Data Compression as a Quantum Computation - Cleve, DiVincenzo (1996)   (Correct)
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