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A complementary relation between classical bits and randomness in local part in simulating singlet state

arXiv
Authors: Guruprasad Kar, MD. Rajjak Gazi, Manik Banik, Subhadipa Das, Ashutosh Rai, Samir Kunkri

Year

2010

Paper ID

11055

Status

Preprint

Abstract Read

~2 min

Abstract Words

143

Citations

N/A

Abstract

Recently Leggett's proposal of non-local model generates new interest in simulating the statistics of singlet state. Singlet state statistics can be simulated by 1 bit of classical communication without using any further nonlocal correlation. But, interestingly, singlet state statistics can also be simulated with no classical cost if a non-local box is used. In the first case, the output is completely unbiased whereas in second case outputs are completely random. We suggest a new (possibly) signaling correlation resource which successfully simulates singlet statistics and this result suggests a new complementary relation between required classical bits and randomness in local output when the classical communication is limited by 1 cbit. This result reproduces the above two models of simulation as extreme cases. This also explains why Leggett's non-local model and the model presented by Branciard et.al. should fail to reproduce the statistics of a singlet.

Why This Paper Matters

  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
  • It adds a 2010 reference point for readers tracking recent quantum research.
  • Recently Leggett's proposal of non-local model generates new interest in simulating the statistics of singlet state.

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