论文标题

使用光电限制器确保实用的量子通信系统

Securing practical quantum communication systems with optical power limiters

论文作者

Zhang, Gong, Primaatmaja, Ignatius William, Haw, Jing Yan, Gong, Xiao, Wang, Chao, Lim, Charles Ci Wen

论文摘要

控制量子密码系统中未经授权的光信号的能量是实施安全性的基本标准。在这里,我们提出了一种基于热光散热效果的被动光电限制设备,提供可靠的功率限制阈值,可以很容易地调整以适合各种量子应用。此外,该设备与多种信号变化(例如波长,脉冲宽度)非常强大,这对于实现安全非常重要。此外,我们通过实验表明,该提出的设备不会损害量子通信信号,因为它对光子自由度的强度,相位或极化程度只有非常最小的影响(如果没有的话,可以忽略不计),从而使其适合一般通信目的。为了展示其用于量子加密图的实用性,我们演示并讨论了三个潜在的应用:(1)与一般的Trojan-Horse攻击相对于一般类别的量子,并增强了安全性,(2)使用Power Emimiter作为对策,将功率限制器用作对抗光照明攻击的对策,以及(3)量子量限制性量的应用程序,以增强量子的安全性。

Controlling the energy of unauthorized light signals in a quantum cryptosystem is an essential criterion for implementation security. Here, we propose a passive optical power limiter device based on thermo-optical defocusing effects providing a reliable power limiting threshold which can be readily adjusted to suit various quantum applications. In addition, the device is robust against a wide variety of signal variations (e.g. wavelength, pulse width), which is important for implementation security. Moreover, we experimentally show that the proposed device does not compromise quantum communication signals, in that it has only a very minimal impact (if not, negligible impact) on the intensity, phase, or polarization degrees of freedom of the photon, thus making it suitable for general communication purposes. To show its practical utility for quantum cryptography, we demonstrate and discuss three potential applications: (1) measurement-device-independent quantum key distribution with enhanced security against a general class of Trojan-horse attacks, (2) using the power limiter as a countermeasure against bright illumination attacks, and (3) the application of power limiters to potentially enhance the implementation security of plug-and-play quantum key distribution.

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