Quantum and Classical Hybrid Generations for Classical Correlations
July 21, 2020 Β· Declared Dead Β· π IEEE Transactions on Information Theory
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Authors
Xiaodie Lin, Zhaohui Wei, Penghui Yao
arXiv ID
2007.10673
Category
quant-ph: Quantum Computing
Cross-listed
cs.CC,
cs.IT
Citations
4
Venue
IEEE Transactions on Information Theory
Last Checked
5 months ago
Abstract
We consider two-stage hybrid protocols that combine quantum resource and classical resource to generate classical correlations shared by two separated players. Our motivation is twofold. First, in the near future the scale of quantum information processing is quite limited, and when quantum resource available is not sufficient for certain tasks, a possible way to strengthen the capability of quantum schemes is introducing extra classical resource. We analyze the mathematical structures of these hybrid protocols, and characterize the relation between the amount of quantum resource and classical resource needed. Second, a fundamental open problem in communication complexity theory is to describe the advantages of sharing prior quantum entanglement over sharing prior randomness, which is still widely open. It turns out that our quantum and classical hybrid protocols provide new insight into this important problem.
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