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连续变量系统的有限资源量子隐形传态拉伸

Finite-resource teleportation stretching for continuous-variable systems.

作者信息

Laurenza Riccardo, Braunstein Samuel L, Pirandola Stefano

机构信息

Computer Science and York Centre for Quantum Technologies, University of York, York, YO10 5GH, United Kingdom.

出版信息

Sci Rep. 2018 Oct 15;8(1):15267. doi: 10.1038/s41598-018-33332-y.

Abstract

We show how adaptive protocols of quantum and private communication through bosonic Gaussian channels can be simplifed into much easier block versions that involve resource states with finite energy. This is achieved by combining an adaptive-to-block reduction technique devised earlier, based on teleportation stretching and relative entropy of entanglement, with a recent finite-resource simulation of Gaussian channels. In this way, we derive weak converse upper bounds for the secret-key capacity of phase-insensitive Gaussian channels which approximate the optimal limit for infinite energy. Our results apply to both point-to-point and repeater-assisted private communications.

摘要

我们展示了通过玻色高斯信道进行量子和私密通信的自适应协议如何能够简化为更易于处理的块版本,这些版本涉及具有有限能量的资源态。这是通过将先前设计的基于隐形传态扩展和纠缠相对熵的自适应到块的简化技术与最近对高斯信道的有限资源模拟相结合来实现的。通过这种方式,我们推导出了相位不敏感高斯信道的秘密密钥容量的弱逆上界,该上界近似于无限能量下的最优极限。我们的结果适用于点对点和中继辅助的私密通信。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db7a/6189181/1e07ebe4aca1/41598_2018_33332_Fig1_HTML.jpg

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