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Thermal analysis of the volume absorber in pulsed excimer laser calorimeters

机译:脉冲准分子激光量热仪中体积吸收器的热分析

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Thermal modeling and analysis of the volume absorber in the pulsed excimer laser calorimeters are very important. In this work, Gaussian distributions are used to model the temporal and spatial distributions of the laser beam and an exponential decay function is used to model the internal absorption of the laser power. A finite- element method is employed to simulate the space- and time-dependence of temperature in the volume absorber. A three-dimensional model and an axial-symmetric model are built and used to study the heating effects of single pulse and multiple pulses on the present design, respectively. Furthermore, a new design is proposed, in which the absorber is not optically thick. A one-dimensional model and an axial-symmetric model, in which the reflection at the interface and the absorption on the copper surface are considered, are used to study the heating effects of single pulse and multiple pulses on the new design. The comparison of the present design to the new design shows that the energy loss and nonequivalence in the new design are smaller than those in the present design. Hence, the new design can increase the accuracy and dynamic range of calorimeters. This work will help the future design of optical calorimeters for measuring the pulse energy of excimer lasers in the deep ultraviolet.
机译:脉冲受激准分子激光量热仪中体积吸收器的热建模和分析非常重要。在这项工作中,高斯分布用于建模激光束的时间和空间分布,而指数衰减函数用于建模激光功率的内部吸收。采用有限元方法来模拟体积吸收器中温度的时空依赖关系。建立了三维模型和轴对称模型,分别用于研究单脉冲和多脉冲对本设计的加热效果。此外,提出了一种新的设计,其中吸收体不具有光学厚度。利用一维模型和轴对称模型,其中考虑了界面处的反射和铜表面上的吸收,来研究单脉冲和多脉冲在新设计上的加热效果。本设计与新设计的比较表明,新设计的能量损失和不等价性均小于本设计。因此,新设计可以提高量热仪的精度和动态范围。这项工作将有助于将来在深紫外中测量准分子激光器的脉冲能量的光学量热仪的设计。

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