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Theoretical Analysis of Second Harmonic Generation Considering Laser Absorption with Repetitive Irradiation of Focused Beam

机译:聚焦光束重复辐射下激光吸收的二次谐波产生的理论分析

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In the frequency conversion, phase matching is essential to obtain the most effective efficiency. However the crystal temperature deviation causes undesirable conversion because the phase matching condition depends on the temperature. Frequency conversion efficiency is higher as the input intensity is higher. Thus the focused beam is usually used as input in order to obtain the higher efficiency, but the focusing also yields high temperature-rise and large temperature gradient near the focal spot; conversion efficiency decrease in the case that the degree of focusing is too much because of its large effect of thermal phase mismatching. Most of conventional theoretical- studies exclude effects of laser absorption and treated the problem as steady state although practical frequency conversion is non steady state problem with repetitive irradiation. We analyzed theoretically second harmonic generation considering laser absorption with repetitive irradiation of focused beam, and discussed the contribution of both the focused beam divergence and temperature distribution induced by repetitive irradiation to conversion efficiency. Based on these analysis re- sults, we estimate the several thermal controls that utilize the internal temperature predicted. As a result we obtained larger enhancement in the control considering the internal crystal temperature.
机译:在频率转换中,相位匹配对于获得最有效的效率至关重要。但是,由于相位匹配条件取决于温度,晶体温度偏差会导致不良的转换。输入强度越高,频率转换效率越高。因此,通常将聚焦光束用作输入以获得更高的效率,但是聚焦也会在焦点附近产生较高的温度上升和较大的温度梯度。在聚焦度太大的情况下,由于其热相失配的较大影响,转换效率降低。大多数常规理论研究都排除了激光吸收的影响,并将该问题视为稳态,尽管实际的频率转换不是重复辐射下的非稳态问题。我们在理论上分析了考虑激光吸收并重复聚焦光束的二次谐波的产生,并讨论了聚焦光束发散和重复辐射引起的温度分布对转换效率的贡献。根据这些分析结果,我们估计利用预测的内部温度的几种热控制。结果,考虑到内部晶体温度,我们在控制方面获得了更大的增强。

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