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张文卓. 划时代的量子通信——写给世界第一颗量子科学实验卫星“墨子号”[J]. 物理, 2016, 45(9): 553-560. DOI: 10.7693/wl20160901
引用本文: 张文卓. 划时代的量子通信——写给世界第一颗量子科学实验卫星“墨子号”[J]. 物理, 2016, 45(9): 553-560. DOI: 10.7693/wl20160901
ZHANG Wen-Zhuo. Epoch-making quantum communication——dedicated to the "Mozi" satellite for Quantum Experiments at Space Scale[J]. PHYSICS, 2016, 45(9): 553-560. DOI: 10.7693/wl20160901
Citation: ZHANG Wen-Zhuo. Epoch-making quantum communication——dedicated to the "Mozi" satellite for Quantum Experiments at Space Scale[J]. PHYSICS, 2016, 45(9): 553-560. DOI: 10.7693/wl20160901

划时代的量子通信——写给世界第一颗量子科学实验卫星“墨子号”

Epoch-making quantum communication——dedicated to the "Mozi" satellite for Quantum Experiments at Space Scale

  • 摘要: 量子通信领域的主要两个研究方向,一个是为经典信息传输做量子加密的“量子密钥分发”,另一个是利用量子纠缠传输量子比特的“量子远程(隐形)传态”。文章以“墨子号”量子科学实验卫星的实验任务为线索,首先讲述量子密钥分发中的BB84协议的原理和应用,并系统性介绍量子比特、量子不可克隆定理、量子纠缠、贝尔不等式等概念,以及量子远程(隐形)传态的原理。文末简要介绍“墨子号”量子科学实验卫星和配套地面站的系统构成,以及空间量子通信的发展趋势。

     

    Abstract: Quantum communication has two main directions, one is quantum key distribution (QKD) which is to establish a quantum key for encrypting classical bits, the other is quantum teleportation which is to transmit quantum bits through quantum entanglement. We first introduce the BB84 protocol of QKD, the concept of quantum bits, the no-cloning theorem, quantum entanglement, and Bell's inequalities, then explain the principle of quantum teleportation. We also describe the experimental system of the "Mozi" satellite and the supporting ground stations, as well as the future development of wide-area quantum communication.

     

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