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Response of microchip solid-state laser to external frequency-shifted feedback and its applications

机译:微芯片固态激光器对外部移频反馈的响应及其应用

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摘要

The response of the microchip solid-state Nd:YAG laser, which is subjected to external frequency-shifted feedback, is experimentally and theoretically analysed. The continuous weak response of the laser to the phase and amplitude of the feedback light is achieved by controlling the feedback power level, and this system can be used to achieve contact-free measurement of displacement, vibration, liquid evaporation and thermal expansion with nanometre accuracy in common room conditions without precise environmental control. Furthermore, a strong response, including chaotic harmonic and parametric oscillation, is observed, and the spectrum of this response, as examined by a frequency-stabilised Nd:YAG laser, indicates laser spectral linewidth broadening.
机译:从实验和理论上分析了微芯片固态Nd:YAG激光器在外部频移反馈下的响应。激光对反馈光的相位和幅度的连续弱响应是通过控制反馈功率水平实现的,该系统可用于以纳米精度实现位移,振动,液体蒸发和热膨胀的非接触式测量在没有精确环境控制的普通房间条件下。此外,观察到强烈的响应,包括混沌谐波和参量振荡,并且该响应的光谱(由频率稳定的Nd:YAG激光器检查)表明激光光谱线宽变宽。

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