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首页> 外文期刊>Journal of Lightwave Technology >Fiber-coupling-operated orthogonal-linear-polarization Nd:YAG microchip laser: photothermal beat-frequency stabilization and interferometric displacement measurement application
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Fiber-coupling-operated orthogonal-linear-polarization Nd:YAG microchip laser: photothermal beat-frequency stabilization and interferometric displacement measurement application

机译:光纤耦合正交线性偏振Nd:YAG微芯片激光器:光热拍频稳定化和干涉位移测量应用

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摘要

The Nd/sup 3+/:YAG microchip laser is operated at orthogonal-linear-polarized two frequencies (/spl lambda/=1.06 /spl mu/m). A low crosstalk of 10/sup -4/ is accomplished by means of the fiber-coupled laser diode pumping. The effect of another fiber-coupled laser diode irradiation on the beat frequency is investigated in terms of photothermally induced stress. The beat frequency of typically 100 MHz is stabilized within /spl plusmn/1 MHz by means of the photothermal feedback control of the cavity stress. The utility of the laser in heterodyne interferometric displacement measurement with a good linearity and high resolution is demonstrated.
机译:Nd / sup 3 + /:YAG微芯片激光器以正交线性偏振两个频率(/ spl lambda / = 1.06 / spl mu / m)工作。通过光纤耦合激光二极管泵浦可实现10 / sup -4 /的低串扰。根据光热感应应力,研究了另一种光纤耦合激光二极管辐照对拍频的影响。借助于腔应力的光热反馈控制,通常100 MHz的拍频稳定在/ spl plusmn / 1 MHz以内。证明了激光在外差式干涉位移测量中的实用性,具有良好的线性和高分辨率。

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