论文标题
通过光学注射的直接相调制:理论研究
Direct phase modulation via optical injection: theoretical study
论文作者
论文摘要
通过光学注入的直接相位调制是一种新开发的方法,用于编码增益开关激光器的相位,该方法满足了量子键分布的发射器上的高要求:紧凑,低损耗,与CMOS技术的兼容性以及没有不良效应导致侧渠道信息泄漏。尽管该系统的进一步发展成功实施和良好的前景,但文献中仍缺乏对该计划的理论研究。在这里,我们第一次进行理论分析。我们研究自发发射噪声的影响,检查增益非线性的作用,并考虑温度漂移的效果。获得的结果表明,这些现象显着影响系统性能。我们试图在这里制定实用说明,这将有助于在详细说明和采用基于光学注射的相位调节器时考虑这些功能。
Direct phase modulation via optical injection is a newly developed method for coding the phase of a gain-switched laser, which meets high requirements placed on transmitters for quantum key distribution: compactness, low losses, compatibility with CMOS technologies, and the absence of undesirable effects leading to the side-channel information leakage. Despite the successful implementation and good prospects for the further development of this system, there is still a lack of theoretical investigations of this scheme in the literature. Here, for the first time, we perform its theoretical analysis. We study the influence of the spontaneous emission noise, examine the role of the gain non-linearity and consider the effect of the temperature drift. The results obtained reveal that these phenomena significantly affect the system performance. We have tried to formulate here practical instructions, which will help to take these features into account when elaborating and employing the optical-injection-based phase modulator.