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Plug-and-play dual-phase-modulated continuous-variable quantum key distribution with photon subtraction

机译:具有光子减法的即插即用双相调制连续变量量子密钥分配

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摘要

Plug-and-play dual-phase-modulated continuous-variable quantum key distribution (CVQKD) protocol can effectively solve the security loopholes associated with transmitting local oscillator (LO). However, this protocol has larger excess noise compared with one-way Gaussian-modulated coherent-states scheme, which limits the maximal transmission distance to a certain degree. In this paper, we show a reliable solution for this problem by employing non-Gaussian operation, especially, photon subtraction operation, which provides a way to improve the performance of plug-and-play dual-phase-modulated CVQKD protocol. The photon subtraction operation shows experimental feasibility in the plug-andplay configuration since it can be implemented under current technology. Security results indicate that the photon subtraction operation can evidently enhance the maximal transmission distance of the plug-and-play dual-phase-modulated CVQKD protocol, which effectively makes up the drawback of the original one. Furthermore, we achieve the tighter bound of the transmission distance by considering the finite-size effect, which is more practical compared with that achieved in the asymptotic limit.
机译:即插即用的双相调制连续可变量子密钥分配(CVQKD)协议可以有效地解决与传输本地振荡器(LO)相关的安全漏洞。但是,与单向高斯调制相干态方案相比,该协议具有更大的过量噪声,从而将最大传输距离限制到一定程度。在本文中,我们通过使用非高斯运算,特别是光子减法运算,显示了解决此问题的可靠解决方案,它提供了一种改善即插即用双相调制CVQKD协议性能的方法。光子减法操作显示了即插即用配置的实验可行性,因为它可以在当前技术下实现。安全性结果表明,光子减法运算可以明显提高即插即用双相调制CVQKD协议的最大传输距离,从而有效地弥补了原协议的缺点。此外,我们通过考虑有限尺寸效应来实现传输距离的更紧密边界,这与在渐近极限中实现的结果相比更加实用。

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