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Investigation and modelling of pump saturation effect on thermal load of Yb:YAG thin disk pumped at various wavelengths

机译:泵饱和效应对Yb热负荷的调查与建模:泵送各种波长的YAG薄盘

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Relations among absorption of pump beam, quantum defect and thermal load were investigated for pump wavelengths of 968 nm and near 940 nm in two independent, real-time measurement experiments complemented with thermal distribution simulation. Saturation of absorption at 969 nm pumping for non-lasing operational regime, which affects temperature rise and exists independently of the thin disk type, disk head construction, pump power and pump beam diameter is reported. Disk temperature dependence of absorption, quantum defect and disk geometry and large difference between absorption, disk temperature and o-o efficiency at both pump wavelengths are discussed.
机译:在两个独立的实时测量实验中,研究了泵浦梁,量子缺陷和热负荷的泵浦波长,泵波长,在两个独立的实时测量实验中进行了泵浦波长,互相研究了热分布模拟。报告了969nm泵送的吸收饱和度,用于非激光运算制度,其影响温度升高并独立于薄盘型,磁盘头构造,泵电源和泵浦光束直径。讨论了磁盘温度依赖性,量子缺陷和磁盘几何形状以及在两个泵波长的吸收,盘温度和O-O效率之间的大差异。

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