Experimental Realization of Device-Independent Quantum Randomness Expansion
Abstract
Randomness expansion where one generates a longer sequence of random numbers from a short one is viable in quantum mechanics but not allowed classically. Device-independent quantum randomness expansion provides a randomness resource of the highest security level. Here, we report the first experimental realization of device-independent quantum randomness expansion secure against quantum side information established through quantum probability estimation. We generate quantum-proof random bits while consuming bits of entropy, expanding our store of randomness by bits at a latency of about h, with a total soundness error . Device-independent quantum randomness expansion not only enriches our understanding of randomness but also sets a solid base to bring quantum-certifiable random bits into realistic applications.
Keywords
Cite
@article{arxiv.1902.07529,
title = {Experimental Realization of Device-Independent Quantum Randomness Expansion},
author = {Ming-Han Li and Xingjian Zhang and Wen-Zhao Liu and Si-Ran Zhao and Bing Bai and Yang Liu and Qi Zhao and Yuxiang Peng and Jun Zhang and Yanbao Zhang and William J. Munro and Xiongfeng Ma and Qiang Zhang and Jingyun Fan and Jian-Wei Pan},
journal= {arXiv preprint arXiv:1902.07529},
year = {2021}
}
Comments
24 pages, 8 figures, 5 tables