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Temperature characteristics and stabilization of orthogonal polarization two-frequency Nd↑(3+):YAG microchip lasers

机译:正交偏振两频Nd↑(3 +):YAG微芯片激光器的温度特性和稳定性

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摘要

The temperature dependence of the beat frequency and polarization azimuth of fiber-guiding laser diode pumped Nd↑(3+):YAG microchip lasers emitting orthogonal linear polarization at two frequencies is invest/gated, and we found a resemblance to the features that result from the application of mechanical force. The experimental observations are well described by the cavity model, which indicate that temperature change induces weak phase anisotropy in addition to the original phase anisotropy with general mutually inclined axes of anisotropy.With a servo control to keep the beat frequency constant,the beat and central laser frequencies are simultaneously stabilized to within ±0.1 MHz and ±0.35GHz,respectively # 1999 Optical Society of America OCIS codes: 140.3530, 120.0120.
机译:研究/门控了在两个频率下发射正交线性偏振的光纤泵浦Nd↑(3 +):YAG微芯片激光器的节拍频率和偏振方位角与温度的关系,我们发现其相似之处在于机械力的应用。腔模型很好地描述了实验观察结果,表明除了常规的相互倾斜的各向异性轴的原始相位各向异性之外,温度变化还引起弱的相位各向异性。采用伺服控制来保持拍频恒定,拍频和中心激光频率同时稳定在±0.1 MHz和±0.35 GHz以内,分别是#1999美国光学学会OCIS代码:140.3530、120.0120。

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