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Storage of Energy in Disk-Shaped Laser Materials

机译:盘形激光材料中的能量存储

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Thin disk laser is analyzed, assuming that the heat is drained in the same direction, as the optical pulse, withdrawing the stored energy, comes.Amplified spontaneous emission, the background loss, and overheating are taken into account with simple model. The scaling laws of the basic parameters are deduced. For the case of fixed repetition rate, the upper bound of thickness is obtained. Key parameters are suggested. The key energy parameter is promoted as criterion for evaluation of different laser materials for the high energy, high mean power disk lasers. The maximum energy per active element is estimated. For the scaling up the power and/or energy withdrawn from a single active element, the background loss should scale down inversely proportional to the cube of the background loss. This scaling law gives the criterion whether the heat should be drained in the direction orthogonal to the beam that withdraws the energy.
机译:分析薄盘激光器时,假设热量沿着与光脉冲相同的方向排出,从而吸收存储的能量,并通过简单的模型考虑了放大的自发发射,背景损耗和过热。推导了基本参数的缩放定律。对于固定的重复率,获得厚度的上限。建议使用关键参数。提升了关键的能量参数,作为评估高能量,高平均功率圆盘激光器不同激光材料的标准。估计每个活动元素的最大能量。为了放大从单个有源元件提取的功率和/或能量,背景损耗应与背景损耗的立方成反比地缩小。该缩放定律给出了是否应在与吸收能量的束正交的方向上排放热量的标准。

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