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Toward Automatic Measurement of the Linewidth-Enhancement Factor Using Optical Feedback Self-Mixing Interferometry With Weak Optical Feedback

机译:使用弱光反馈的光反馈自混合干涉技术实现线宽增强因子的自动测量

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摘要

This paper proposes an approach for automatically measuring the linewidth-enhancement factor (LEF) of semiconductor lasers using optical feedback self-mixing interferometry (OFSMI), which works in weak optical feedback regime and where the external target is subject to simple harmonic vibration with unknown vibration frequency and magnitude. According to well-known Lang–Kobayashi theory the waveform of the modulated optical output power from the OFSMI system is influenced by multiple parameters, including the LEF, the optical feedback level factor, and the parameters related to the movement of external target. In order to estimate LEF, other parameters must also be considered and, hence, a multiple parameter estimation strategy is required. We propose a solution for this multiple parameter estimation problem based on the principle of data-to-theoretical model match. In particular, a strategy for minimizing a cost function in order to achieve the best fitting is proposed with which all the unknown parameters can be estimated. The performance of the proposed approach is tested using experimental data in comparison with other two approaches. It is seen that, over different experimental signals, the standard deviation for estimated LEF is less than 4.58% on average, which shows that results have excellent consistency. Moreover, the proposed approach also provides a solution for vibration measurement (that is, vibration frequency and magnitude)
机译:本文提出了一种使用光反馈自混合干涉术(OFSMI)自动测量半导体激光器的线宽增强因子(LEF)的方法,该方法可在弱光反馈条件下工作,并且外部目标受到简单谐波振动的未知振动频率和幅度。根据著名的Lang-Kobayashi理论,来自OFSMI系统的调制光输出功率的波形受到多个参数的影响,包括LEF,光反馈水平因子以及与外部目标运动有关的参数。为了估计LEF,还必须考虑其他参数,因此,需要多参数估计策略。我们基于数据与理论模型匹配的原理,针对此多参数估计问题提出了一种解决方案。特别地,提出了一种用于最小化成本函数以便实现最佳拟合的策略,利用该策略可以估计所有未知参数。与其他两种方法相比,使用实验数据测试了该方法的性能。可以看出,在不同的实验信号下,估计的LEF的标准偏差平均小于4.58%,这表明结果具有出色的一致性。此外,所提出的方法还为振动测量(即振动频率和幅度)提供了解决方案。

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