A novel photo-thermal setup for evaluation of absorptance losses and thermal wavefront deformations in DUV optics

K. Mann, A. Bayer, T. Miege, U. Leinhos, B. Schäfer
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引用次数: 2

Abstract

For an assessment of the optical quality of DUV optics, a high-sensitivity wavefront analyzer system based on the Hartmann-Shack principle is employed. The device accomplishes precise on-line monitoring of wavefront deformations of a collimated test beam transmitted through the laser-irradiated site of a sample. Due to the achieved sub-nm resolution, it can be used as an alternative to calorimetric and interferometric measurements for 'at wavelength' testing of optics, e.g. for on-line registration of thermal lensing effects or compaction in fused silica. By recording wavefront distortions of fused silica samples of different thickness and at different fluences the contribution of bulk and surface to the total absorption as well as one- and two-photon effects can be separated.
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一种评估DUV光学吸收损失和热波前变形的新型光热装置
为了评估DUV光学系统的光学质量,采用了基于哈特曼-沙克原理的高灵敏度波前分析系统。该装置完成了精确的在线监测波前变形的准直测试光束传输通过激光照射的位置的样品。由于达到了亚纳米分辨率,它可以作为量热测量和干涉测量的替代方法,用于光学器件的“波长”测试,例如用于热透镜效应的在线注册或熔融二氧化硅中的压实。通过记录不同厚度和不同影响下熔融石英样品的波前畸变,可以分离出体积和表面对总吸收的贡献以及单光子和双光子效应。
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