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首页> 外文期刊>Quantum electronics >Modelling of the laser amplification process with allowance for the effect of the temperature distribution in an Yb : YAG gain element on the thermophysical and lasing characteristics of the medium
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Modelling of the laser amplification process with allowance for the effect of the temperature distribution in an Yb : YAG gain element on the thermophysical and lasing characteristics of the medium

机译:激光放大过程的建模余量对Yb温度分布的影响:YAG增益元件对介质的热性和激光特性

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A time-dependent three-dimensional model for the laser amplification process has been constructed with allowance for the effect of the temperature distribution on the thermophysical and lasing characteristics of gain media. We have performed numerical modelling of the laser amplification process in the gain elements of a two-stage subjoule-level cryogenic laser amplifier operating at a pulse repetition rate of up to 1 kHz. It has been shown that taking into account the temperature distribution is of critical importance in calculation of cryogenically cooled laser amplifiers pumped with high-power diodes. We have found optimal diode pump parameters at which the maximum achievable pulse energy at the amplifier out-put can reach 300 and 570 mJ at pulse repetition rates of 1000 and 500 Hz, respectively.
机译:用于激光放大过程的时间依赖性三维模型已经用余量构成了温度分布对增益介质的热性和激光特性的影响。 我们在两级子宫水平低温激光放大器的增益元件中执行了激光放大过程的数值模型,以脉冲重复率高达1 kHz。 已经表明,考虑到温度分布在用高功率二极管泵送的低温冷却激光放大器的计算中是至关重要的。 我们已经找到了最佳二极管泵参数,其放大器输出的最大可实现的脉冲能量分别可以在1000和500Hz的脉冲重复速率下达到300和570mJ。

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