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提取在高能量密度(20 - 150 J/cm²)下351 nm、3 ns激光脉冲作用于熔融石英表面时激光损伤前驱体的分布情况。

Extracting the distribution of laser damage precursors on fused silica surfaces for 351 nm, 3 ns laser pulses at high fluences (20-150 J/cm2).

作者信息

Laurence Ted A, Bude Jeff D, Ly Sonny, Shen Nan, Feit Michael D

机构信息

Physical and Life Sciences Directorate and National Ignition Facility, Lawrence Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Opt Express. 2012 May 7;20(10):11561-73. doi: 10.1364/OE.20.011561.

Abstract

Surface laser damage limits the lifetime of optics for systems guiding high fluence pulses, particularly damage in silica optics used for inertial confinement fusion-class lasers (nanosecond-scale high energy pulses at 355 nm/3.5 eV). The density of damage precursors at low fluence has been measured using large beams (1-3 cm); higher fluences cannot be measured easily since the high density of resulting damage initiation sites results in clustering. We developed automated experiments and analysis that allow us to damage test thousands of sites with small beams (10-30 µm), and automatically image the test sites to determine if laser damage occurred. We developed an analysis method that provides a rigorous connection between these small beam damage test results of damage probability versus laser pulse energy and the large beam damage results of damage precursor densities versus fluence. We find that for uncoated and coated fused silica samples, the distribution of precursors nearly flattens at very high fluences, up to 150 J/cm2, providing important constraints on the physical distribution and nature of these precursors.

摘要

表面激光损伤限制了用于引导高能量密度脉冲系统的光学元件的使用寿命,尤其是用于惯性约束聚变级激光器(355纳米/3.5电子伏特的纳秒级高能量脉冲)的石英光学元件的损伤。已使用大光束(1-3厘米)测量了低能量密度下的损伤前驱体密度;由于产生的损伤起始点密度很高会导致聚集,因此难以测量更高的能量密度。我们开发了自动化实验和分析方法,能够用小光束(10-30微米)对数千个位点进行损伤测试,并自动对测试位点成像以确定是否发生了激光损伤。我们开发了一种分析方法,该方法在损伤概率与激光脉冲能量的这些小光束损伤测试结果和损伤前驱体密度与能量密度的大光束损伤结果之间建立了严格的联系。我们发现,对于未镀膜和镀膜的熔融石英样品,前驱体的分布在高达150焦耳/平方厘米的非常高的能量密度下几乎趋于平缓,这为这些前驱体的物理分布和性质提供了重要限制。

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