Cite this article:
Ming-Feng Xu, Wei Pan, Lian-Shan Yan, Bin Luo, Xi-Hua Zou, Peng-Hua Mu, Li-Yue Zhang. Improved quantum randomness amplification with finite number of untrusted devices based on a novel extractorJ. Chin. Phys. B, 2018, 27(1): 010305.
| Ming-Feng Xu, Wei Pan, Lian-Shan Yan, Bin Luo, Xi-Hua Zou, Peng-Hua Mu, Li-Yue Zhang. Improved quantum randomness amplification with finite number of untrusted devices based on a novel extractorJ. Chin. Phys. B, 2018, 27(1): 010305. |
Improved quantum randomness amplification with finite number of untrusted devices based on a novel extractor
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Abstract
Quantum randomness amplification protocols have increasingly attracted attention for their fantastic ability to amplify weak randomness to almost ideal randomness by utilizing quantum systems. Recently, a realistic noise-tolerant randomness amplification protocol using a finite number of untrusted devices was proposed. The protocol has the composable security against non-signalling eavesdroppers and could produce a single bit of randomness from weak randomness sources, which is certified by the violation of certain Bell inequalities. However, the protocol has a non-ignorable limitation on the min-entropy of independent sources. In this paper, we further develop the randomness amplification method and present a novel quantum randomness amplification protocol based on an explicit non-malleable two independent-source randomness extractor, which could remarkably reduce the above-mentioned specific limitation. Moreover, the composable security of our improved protocol is also proposed. Our results could significantly expand the application range for practical quantum randomness amplification, and provide a new insight on the practical design method for randomness extraction. -
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