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On the origin of the acoustic signals generated in KDP by pulsed UV laser excitation

机译:关于脉冲UV激光激发在KDP中产生的声信号的起源

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The origin of the acoustic signals that are generated in the bulk of a KDP crystal during irradiation with short UV laser pulses is determined. The generation of these signals by excitation with moderate or high optical fluences is linked to the evolution of the population of point defects that is generated in the crystal by absorption of two UV photons. These defects are bleached due to their efficient linear absorption of UV radiation, and their non-radiative relaxation is shown to be the origin of the acoustic signals. The rate constants for the different processes involved in both the linear and the non-linear interactions were determined from the experiments presented here. Characteristic values for the quantum efficiency for the generation of defects, η_F = 0.95 ± 0.05, and for the quantum efficiency for bleaching of defects, η_B = 0.065 ± 0.005, were obtained for 266-nm laser radiation. The model developed for the intensity of the acoustic signals reproduces the experimental facts with very good accura
机译:确定了在短UV激光脉冲照射期间在KDP晶体的主体中生成的声信号的来源。通过以中等或高光学通量激发来产生这些信号与晶体中通过吸收两个紫外线光子而产生的点缺陷的数量有关。这些缺陷由于它们对紫外线辐射的有效线性吸收而被漂白,并且它们的非辐射弛豫被证明是声信号的起源。从此处介绍的实验中确定了线性和非线性相互作用中涉及的不同过程的速率常数。对于266 nm的激光辐射,获得了缺陷产生的量子效率η_F= 0.95±0.05和漂白缺陷的量子效率η_B= 0.065±0.005的特性值。为声音信号强度开发的模型以非常好的精度再现了实验事实。

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