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Temperature nonuniformity occurring during the cooling process of a KDP crystal and its effects on second-harmonic generation

机译:KDP晶体冷却过程中发生的温度不均匀性及其对二次谐波产生的影响

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The temperature nonuniformity occurring during the cooling process of a KDP crystal is studied, along with its effects on the second-harmonic generation (SHG) of a high-average-power laser. A comprehensive model is proposed incorporating principles of thermodynamics, mechanics, and optics, and it is applied to investigate the temperature nonuniformity and its effects. The temperature rise caused by linear absorption is calculated, while the temperature nonuniformity occurring during the cooling process is analyzed using the finite-element method (FEM). The stress induced by the nonuniformity is then studied using the FEM, and the trend of its change is determined. Moreover, the changes in refractive index caused by the stress are calculated, the results of which are used to determine the variations in the induced phase mismatch. The SHG efficiency considering the phase mismatch is eventually obtained by solving the coupling wave equations. The results demonstrate that the temperature nonuniformity has negative effects on the SHG efficiency.
机译:研究了在KDP晶体冷却过程中发生的温度不均匀性,以及它对高平均功率激光器的二次谐波产生(SHG)的影响。提出了一个综合模型,该模型结合了热力学,力学和光学原理,并用于研究温度不均匀性及其影响。计算由线性吸收引起的温升,同时使用有限元方法(FEM)分析冷却过程中发生的温度不均匀性。然后使用有限元法研究由不均匀性引起的应力,并确定其变化趋势。此外,计算由应力引起的折射率变化,将其结果用于确定引起的相位失配的变化。最终通过考虑耦合波方程获得考虑相位失配的SHG效率。结果表明,温度不均匀对SHG效率有负面影响。

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