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Retrieving alpha factor of semiconductor lasers from a self-mixing interference waveform

机译:从自混合干涉波形中检索半导体激光器的α因子

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As an active research field, the self-mixing interferometry (SMI) based on semiconductor lasers (SLs) is a highly promising and emerging technique for non-contact sensing and parameter measurement of SLs. The basic structure of an SMI system consists of an SL, a lens and an external target. When a portion of reflected light from the target travels back to the laser cavity, a new lasing field is built up leading to both amplitude and phase modulations. The modulated output power is called a self-mixing signal which carries the information of both the target and SL's feature parameters. Alpha factor, also known as linewidth enhancement factor, is one of the most important SL's feature parameters. It characterizes the characteristics of SLs, such as the linewidth, the chirp, the injection lock range and the dynamic performances. This paper presents a new method for retrieving alpha factor of SLs by making use of a self-mixing interference (SMI) waveform. According to the well-known Lang-Kobayashi (L-K) theory, the SMI waveform is shaped by multiple parameters, including the alpha, the optical feedback level factor (denoted as C) and other parameters related to the oscillation of the external target. In this work, we build a new equation based on the SMI model derived from the L-K theory, which can be used to calculate the alpha value. In the existing SMI based methods for measuring the alpha factor, the optical feedback level C is limited within a certain narrow range. The proposed method is able to relieve this limitation. The associated simulations and experiments are carried out for verifying the proposed method.
机译:作为活跃的研究领域,基于半导体激光器(SL)的自混合干涉术(SMI)是用于SL的非接触式传感和参数测量的极有前途的新兴技术。 SMI系统的基本结构由SL,镜头和外部目标组成。当来自目标的一部分反射光返回激光腔时,会建立新的激光场,从而导致振幅和相位调制。调制后的输出功率称为自混合信号,该信号同时包含目标和SL的特征参数的信息。 Alpha因子,也称为线宽增强因子,是SL最重要的特征参数之一。它表征了SL的特性,例如线宽,线性调频脉冲,注入锁定范围和动态性能。本文提出了一种利用自混合干扰(SMI)波形检索SL的α因子的新方法。根据众所周知的Lang-Kobayashi(L-K)理论,SMI波形由多个参数整形,包括alpha,光反馈电平因子(表示为C)和其他与外部目标振荡相关的参数。在这项工作中,我们基于源自L-K理论的SMI模型建立了一个新方程,该方程可用于计算alpha值。在现有的基于SMI的用于测量α因子的方法中,光反馈水平C被限制在一定的窄范围内。所提出的方法能够减轻该限制。进行了相关的仿真和实验以验证所提出的方法。

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