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Surface loss limit of the power scaling of a thin-disk laser

机译:薄盘激光器功率缩放的表面损耗极限

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We show that the general limit of power scaling of thin-disk lasers comes not only from the overheating and amplified spontaneous emission (ASE) but also from the surface loss. Overheating or thermal fracture increases the transverse size at the scaling, whereas ASE limits the gain-size product. The gain coefficient should decrease at the scaling. However, the round-trip gain should remain larger than the background loss; hence, the thickness should increase at the scaling. The limit of the output power per single active element occurs when the medium becomes too thick and cannot work efficiently without overheating. The maximum output power scales inversely with the cube of the surface loss coefficient. In the quasi-continuous regime, the average power scales inversely to the product of the duration of pulses to the repetition rate. (c) 2006 Optical Society of America.
机译:我们表明,薄盘激光器功率缩放的一般限制不仅来自过热和放大的自发发射(ASE),还来自表面损耗。过热或热断裂会在缩放时增大横向尺寸,而ASE会限制增益尺寸乘积。增益系数应按比例减小。但是,往返增益应保持大于背景损耗。因此,厚度应按比例增加。当介质太厚并且无法有效工作而不会过热时,就会出现每个有源元件输出功率的限制。最大输出功率与表面损耗系数的立方成反比。在准连续状态下,平均功率与脉冲持续时间与重复率的乘积成反比。 (c)2006年美国眼镜学会。

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