Hou Fang, Zhang Muyang, Zheng Yinbo, Ding Lei, Tang Xiaodong, Liang Yanmei
Opt Express. 2019 Feb 4;27(3):3698-3709. doi: 10.1364/OE.27.003698.
An approach to characterize laser-induced bulk damage in optical crystal materials was demonstrated. With a homemade swept-source optical coherence tomography (SS-OCT) system, we obtained three-dimensional images of the bulk damage produced by laser pulses with wavelength of 351 nm, pulse width of 5 ns, beam diameter of 5.5 mm and fluences from 4.56 J/cm to 9.95 J/cm in Potassium Dihydrogen Phosphate (KDP) crystal. Algorithms based on three-dimensional OCT images were specially designed to count and locate bulk damage pinpoints in KDP crystal, obtaining their equivalent diameter distribution and pinpoint density caused by different fluences. It is demonstrated that the characteristics of bulk damage detected by SS-OCT are similar to those obtained by available approaches. The rapid three-dimensional imaging by SS-OCT provides a new approach of detecting laser-induced bulk damage.
展示了一种表征光学晶体材料中激光诱导体损伤的方法。利用自制的扫频光学相干断层扫描(SS-OCT)系统,我们获得了磷酸二氢钾(KDP)晶体中由波长为351 nm、脉宽为5 ns、光束直径为5.5 mm且能量密度从4.56 J/cm²到9.95 J/cm²的激光脉冲产生的体损伤的三维图像。专门设计了基于三维OCT图像的算法来计数和定位KDP晶体中的体损伤点,得到它们由不同能量密度引起的等效直径分布和点密度。结果表明,SS-OCT检测到的体损伤特征与现有方法获得的特征相似。SS-OCT的快速三维成像提供了一种检测激光诱导体损伤的新方法。