耦合纳米激光器的自发发射噪声弹性

Aycke Roos, Stefan Meinecke, K. Lüdge
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引用次数: 0

摘要

我们研究了两个延迟耦合纳米激光器锁相操作的自发发射噪声弹性。该系统由具有随机Langevin型噪声源的半经典Maxwell–Bloch速率方程建模。我们的结果表明,偏振去相位时间是腔光子寿命的两到三倍,最大限度地提高了系统在存在噪声引起的扰动时保持锁相的能力。Langevin噪声项是由自发发射过程引起的,自发发射过程改变了孤立激光器和耦合系统的强度自相关特性。在实验装置中,这些量是可测量的,可以直接与我们的数值数据进行比较。我们发现的噪声容限的强参数依赖性可能为设计稳健的芯片上集成纳米激光器网络提供了可能的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spontaneous emission noise resilience of coupled nanolasers
We investigate the spontaneous emission noise resilience of the phase-locked operation of two delay-coupled nanolasers. The system is modeled by semi-classical Maxwell–Bloch rate equations with stochastic Langevin-type noise sources. Our results reveal that a polarization dephasing time of two to three times the cavity photon lifetime maximizes the system’s ability to remain phase-locked in the presence of noise-induced perturbations. The Langevin noise term is caused by spontaneous emission processes which change both the intensity auto-correlation properties of the solitary lasers and the coupled system. In an experimental setup, these quantities are measurable and can be directly compared to our numerical data. The strong parameter dependence of the noise tolerance that we find may show possible routes for the design of robust on-chip integrated networks of nanolasers.
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