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使用 16 维光子态的量子密钥分发会话。

Quantum key distribution session with 16-dimensional photonic states.

机构信息

Departamento de Física, Universidad de Concepción, 160-C Concepción, Chile.

出版信息

Sci Rep. 2013;3:2316. doi: 10.1038/srep02316.

Abstract

The secure transfer of information is an important problem in modern telecommunications. Quantum key distribution (QKD) provides a solution to this problem by using individual quantum systems to generate correlated bits between remote parties, that can be used to extract a secret key. QKD with D-dimensional quantum channels provides security advantages that grow with increasing D. However, the vast majority of QKD implementations has been restricted to two dimensions. Here we demonstrate the feasibility of using higher dimensions for real-world quantum cryptography by performing, for the first time, a fully automated QKD session based on the BB84 protocol with 16-dimensional quantum states. Information is encoded in the single-photon transverse momentum and the required states are dynamically generated with programmable spatial light modulators. Our setup paves the way for future developments in the field of experimental high-dimensional QKD.

摘要

信息的安全传输是现代通信中的一个重要问题。量子密钥分发(QKD)通过使用单个量子系统在远程双方之间生成相关位来解决这个问题,这些位可以用来提取密钥。使用 D 维量子信道的 QKD 提供了随 D 增加而增加的安全优势。然而,绝大多数 QKD 实现都限于二维。在这里,我们通过首次使用基于 BB84 协议的 16 维量子态进行全自动 QKD 会话,证明了在实际量子密码学中使用更高维度的可行性。信息编码在单光子横向动量中,所需的状态通过可编程空间光调制器动态生成。我们的设置为实验高维 QKD 领域的未来发展铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96b3/3727059/2b659e40554c/srep02316-f1.jpg

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