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Effect on scattering of complex morphology of DKDP bulk damage sites

机译:DKDP整体损伤部位对复杂形态散射的影响

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Bulk damage sites in frequency conversion crystals scatter and/or absorb laser light leading to interference and downstream intensification. We find that laser induced bulk damage sites in DKDP exhibit a "shell" of structurally and/or chemically modified material surrounding a central core as indicated by SEM and optical micrographs and micro Raman spectral maps. We hypothesize that the modified material has been shock wave densified and estimate the amount of densification and its effect on scattering. A simple model indicates that densification of several percent is likely and that the scattering cross section may be larger than the geometric area of the inner core by an order of magnitude.
机译:变频晶体中的大量损坏部位会散射和/或吸收激光,从而导致干扰和下游的增强。我们发现,如SEM和光学显微照片以及显微拉曼光谱图所示,激光诱导的DKDP中的大量破坏位点表现出围绕中心核的结构和/或化学改性材料的“壳”。我们假设改性材料已被冲击波致密化,并估计了致密化的量及其对散射的影响。一个简单的模型表明可能会致密几个百分点,并且散射横截面可能比内核的几何面积大一个数量级。

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