Agnesi Costantino, Avesani Marco, Stanco Andrea, Villoresi Paolo, Vallone Giuseppe
Opt Lett. 2019 May 15;44(10):2398-2401. doi: 10.1364/OL.44.002398.
Quantum key distribution (QKD) allows distant parties to exchange cryptographic keys with unconditional security by encoding information on the degrees of freedom of photons. Polarization encoding has been extensively used for QKD along free-space, optical fiber, and satellite links. However, the polarization encoders used in such implementations are unstable, expensive, and complex and can even exhibit side channels that undermine the security of the protocol. Here we propose a self-compensating polarization encoder based on a lithium niobate phase modulator inside a Sagnac interferometer and implement it using only commercial off-the-shelf (COTS) components. Our polarization encoder combines a simple design and high stability reaching an intrinsic quantum bit error rate as low as 0.2%. Since realization is possible from the 800 to the 1550 nm band using COTS devices, our polarization modulator is a promising solution for free-space, fiber, and satellite-based QKD.
量子密钥分发(QKD)允许远程各方通过在光子的自由度上编码信息来以无条件安全性交换加密密钥。偏振编码已广泛用于沿自由空间、光纤和卫星链路的QKD。然而,此类实现中使用的偏振编码器不稳定、昂贵且复杂,甚至可能表现出破坏协议安全性的侧信道。在此,我们提出一种基于Sagnac干涉仪内铌酸锂相位调制器的自补偿偏振编码器,并仅使用商用现货(COTS)组件来实现它。我们的偏振编码器结合了简单的设计和高稳定性,达到了低至0.2%的固有量子比特错误率。由于使用COTS器件可在800至1550纳米波段实现,我们的偏振调制器是基于自由空间、光纤和卫星的QKD的一个有前景的解决方案。