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分析了HF酸腐蚀时间对熔石英抗激光损伤阈值的影响.用浓度为4%的HF酸腐蚀15min后,测得熔石英抗激光损伤阈值提高了53.1%,并对其机理作了分析.激光损伤实验使用波长为355nm,脉宽为10ns,频率为3Hz的Nd:YAG调Q激光器测试系统.当泵浦激光辐照熔石英样品表面时,后表面比前表面更容易发生激光诱导损伤,HF酸腐蚀的程度对前后表面抗激光损伤阈值比基本没有影响.对实验样品在HF酸腐蚀前后表面粗糙度的测量结果表明,HF酸腐蚀时间较短时实验样品表面粗糙度基本无变化,如果选用的样品存在较多的表面及亚表面缺陷,当HF酸腐蚀去除掉重沉积层后,表面粗糙度将急剧上升.

参考文献

[1] Temple P A;Lowdermilk W H;Milam D .Carbon dioxide laser polishing of fused silica surfaces forin-creased laserdamage resistance at 1064nm[J].Applied Optics,1982,21(18):3249.
[2] Kerr N C;Emmong D C.The effect of laser annealing on laser induced damage threshold[J].National Institute of Standards and Technology Special Publ,1989:164.
[3] 李仲伢.激光处理对光学薄膜和激光玻璃损伤的影响[J].光学学报,1994(03):281.
[4] Joseph A;Menapace;Bernie Penetrante et al.Combined advanced finishing and UV laser conditioning for producing UV damage resistant fused silica optics[J].SPIE,2002,4679:56.
[5] Battersby C L;Sheehan L M;Kozlowski M R.Effects of wet Etch processing on laser-induced damage of fused silica surfaces[A].Colorado,1998
[6] Hata C;Inazumi T;Izumitani T .Chemically strengthened slab laser glass with optical surface quality[J].National Institute of Standards and Technology Special Publ,1986,SP752:168.
[7] Burnham A K;Hackel L;Wegner P et al.Improving 351-nm damage performance of large-aperture fused silica and DKDP optics[J].SPIE,2002,4679:173.
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