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Self-mixing technique for vibration measurements in a laser diode with multiple modes created by optical feedback

机译:自混合技术在激光二极管中通过光反馈产生多种模式的振动测量

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摘要

We present experimental and theoretical results obtained from the study of the effects of optical feedback in low-cost Fabry-Perot laser diodes due to the presence of an external cavity created by an external reflective or diffusive vibrating target. Experimental results show that a change in the length of the external cavity produces the well-known amplitude modulation of the optical output power and, depending on the amount of optical feedback, a subperiodicity appears in the amplitude modulation of the output power. The experiments show that the subperiodicity appears independently of the length of the external cavity and is due to mode hopping between different longitudinal laser modes. Numerical analysis focused on the effects observed support that the mode hop occurs between modes whose round-trip phase delay along the external cavity is out of phase, thus producing a subperiodicity of the total amplitude modulation.
机译:由于存在由外部反射或漫射振动目标产生的外部空腔,我们提供了从低成本Fabry-Perot激光二极管中的光反馈效应研究中获得的实验和理论结果。实验结果表明,外腔长度的变化会产生众所周知的光输出功率幅度调制,并且根据光反馈量的不同,输出功率的幅度调制会出现亚周期性。实验表明,亚周期的出现与外腔的长度无关,并且归因于不同纵向激光模式之间的模式跳跃。集中于观察到的影响的数值分析支持模式跳变发生在沿外腔的往返相位延迟异相的模式之间,因此产生了总振幅调制的亚周期。

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