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Laser Induced Damage of Potassium Dihydrogen Phosphate (KDP) Optical Crystal Machined by Water Dissolution Ultra-Precision Polishing Method

机译:激光诱导磷酸二氢钾(KDP)光学晶体的损伤超精密抛光法加工

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摘要

Laser induced damage threshold (LIDT) is an important optical indicator for nonlinear Potassium Dihydrogen Phosphate (KDP) crystal used in high power laser systems. In this study, KDP optical crystals are initially machined with single point diamond turning (SPDT), followed by water dissolution ultra-precision polishing (WDUP) and then tested with 355 nm nanosecond pulsed-lasers. Power spectral density (PSD) analysis shows that WDUP process eliminates the laser-detrimental spatial frequencies band of micro-waviness on SPDT machined surface and consequently decreases its modulation effect on the laser beams. The laser test results show that LIDT of WDUP machined crystal improves and its stability has a significant increase by 72.1% compared with that of SPDT. Moreover, a subsequent ultrasonic assisted solvent cleaning process is suggested to have a positive effect on the laser performance of machined KDP crystal. Damage crater investigation indicates that the damage morphologies exhibit highly thermal explosion features of melted cores and brittle fractures of periphery material, which can be described with the classic thermal explosion model. The comparison result demonstrates that damage mechanisms for SPDT and WDUP machined crystal are the same and WDUP process reveals the real bulk laser resistance of KDP optical crystal by removing the micro-waviness and subsurface damage on SPDT machined surface. This improvement of WDUP method makes the LIDT more accurate and will be beneficial to the laser performance of KDP crystal.
机译:激光诱导损伤阈值(LIDT)是用于高功率激光系统中使用的非线性钾二氢磷酸二氢磷酸二氢(KDP)晶体的重要光学指示。在该研究中,KDP光学晶体最初用单点金刚石转动(SPDT)加工,然后进行水溶解超精密抛光(WDUP),然后用355nm纳秒脉冲激光器测试。功率谱密度(PSD)分析表明,WDUP工艺消除了SPDT加工表面上的微波性的激光有害空间频率带,因此降低了对激光束的调制效应。激光试验结果表明,与SPDT相比,WDUP机加工晶体的LIDT改善了72.1%的稳定性增加了72.1%。此外,建议随后的超声辅助溶剂清洁过程对加工KDP晶体的激光性能具有积极影响。损伤火山口调查表明,损伤形态表现出高度热爆炸特征的熔化芯和周边材料的脆性骨折,这可以通过经典的热爆炸模型来描述。比较结果表明,SPDT和WDUP加工晶体的损坏机制是相同的,WDUP过程通过去除SPDT加工表面上的微波性和地下损坏来揭示KDP光学晶体的真实散装激光电阻。这种WDUP方法的改进使LIDT更加准确,并且对KDP晶体的激光性能有益。

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