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Scaling of Thin Disk Pulse Amplifiers

机译:薄盘脉冲放大器的缩放比例

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摘要

In the past decade, the Thin Disk laser design was very successful as a high power laser design for cw lasers with good beam quality and high efficiency. Several numerical models show that the actually demonstrated output powers are far below the scaling limits due to amplified spontaneous emission (ASE). Also pulsed lasers based on Thin Disk amplifiers achieved comparable high average power, but only with medium pulse energies (about 100 mJ). Numerical models show that ASE effects limit the possible pulse energy to values of a few Joule, using the typical high power cw Thin Disk laser design. To evaluate designs for higher pulse energies a time resolved numerical model of pump absorption and ASE was developed and combined with a model of pulse amplification. The evaluation is focused on quasi-cw pumped pulse amplifiers. It includes the analysis of temperature, stress, deformation and thermal lensing, using finite element methods. This numerical model is used to develop thin disk designs for high output energies.
机译:在过去的十年中,薄盘激光器设计作为具有连续光束质量和高效率的连续激光器的高功率激光器设计非常成功。几个数值模型表明,由于放大的自发发射(ASE),实际显示的输出功率远远低于缩放限制。同样,基于Thin Disk放大器的脉冲激光器也达到了相当高的平均功率,但仅具有中等脉冲能量(约100 mJ)。数值模型表明,使用典型的大功率连续波薄盘激光器设计,ASE效应将可能的脉冲能量限制在几焦耳的范围内。为了评估更高脉冲能量的设计,开发了泵吸收和ASE的时间分辨数值模型,并将其与脉冲放大模型结合。评估的重点是准连续泵浦脉冲放大器。它包括使用有限元方法分析温度,应力,变形和热透镜。该数值模型用于开发高输出能量的薄盘设计。

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