Bliss E S, Milam D, Bradbury R A
Appl Opt. 1973 Apr 1;12(4):677-89. doi: 10.1364/AO.12.000677.
Laser induced damage characteristics have been studied for twelve, multiple-layer dielectric, 95% reflecting mirrors irradiated with single ruby laser pulses of 20 nsec and 20-psec duration and Gaussian beam radii ranging from 0.06 mm to 0.24 mm. During measurements to determine damage threshold the pulse energy, an oscilloscope trace of the pulse, and the beam's transverse energy density profile at the surface being damaged are recorded for each shot. In a separate set of experiments, the temporal development of coating breakup and plasma formation is investigated. The experimental results are discussed in the context of possible damage mechanisms.
研究了12个多层介质、反射率为95%的反射镜在持续时间为20纳秒和20皮秒、高斯光束半径在0.06毫米至0.24毫米范围内的单脉冲红宝石激光辐照下的激光诱导损伤特性。在确定损伤阈值的测量过程中,每次发射都记录脉冲能量、脉冲的示波器轨迹以及被损伤表面处光束的横向能量密度分布。在另一组实验中,研究了涂层破裂和等离子体形成的时间发展过程。结合可能的损伤机制对实验结果进行了讨论。