High-energy gradient doped Yb:YAG thin slab laser amplifier

A. Starobor, D.A. Kuzin, I. Kuznetsov, O. Palashov
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Abstract

A concept of compact, scalable and reliable solid-state amplifier based on thin slab is proposed. It combines the following features: single pass pump and signal propagation without internal reflections; use of a gradient doped thin-slab AE; beam guiding effect pre-compensation. The direct passage of the radiation allows to obtain a high quality of the beam (M2⪅1.4). Thin slab geometry and gradient doping provide excellent heat dissipation and low heating (30 °C at 500 W pumping power). The amplification of stretched and pre-amplified femtosecond radiation reached 3.6 (with input of 6 mJ) at a pump power of 500 W, so output energy was 22 mJ at 1.5kHz. A further increase in the output energy is possible according to calculations, up to 100 mJ, which is limited by the breakdown threshold of the output end at a pump power of 1 kW.
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高能梯度掺杂 Yb:YAG 薄板激光放大器
提出了一种基于薄板的紧凑、可扩展和可靠的固态放大器概念。它结合了以下特点:单通道泵浦和信号传播,无内部反射;使用梯度掺杂薄板 AE;光束导向效应预补偿。辐射直接通过可获得高质量的光束(M2⪅1.4)。薄板几何形状和梯度掺杂提供了出色的散热和低发热(在 500 W 抽运功率下为 30 °C)。在泵浦功率为 500 W 时,拉伸和预放大飞秒辐射的放大率达到 3.6(输入为 6 mJ),因此 1.5kHz 时的输出能量为 22 mJ。根据计算,输出能量有可能进一步增加,达到 100 毫焦,但这受到泵功率为 1 千瓦时输出端的击穿阈值的限制。
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