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Techniques for qualitative and quantitative measurement of aspects of laser-induced damage important for laser beam propagation

机译:定性和定量测量对激光传播有重要意义的激光损伤的技术

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摘要

Characterizing laser-induced damage in optical materials is important for laser design and operation. Previous methods of evaluating optical materials damage resistance to high-power laser irradiation have typically suffered from shot-to-shot uncertainties in laser energy output and/ or have insufficient sensitivity. More importantly, such methods do not address the aspects of laser-induced damage important to laser beam propagation, namely the amount of light scattered by the damage. We present a method for the quantitative correlation of material modification on the surface or in the bulk of optical materials to laser parameters, which deconvolutes the effects of laser output instability. In image analysis, two images, one a fluence spatial profile and the other a visible light scatter image of the damage, are directly compared to extract scatter as a function of fluence. An automated microscope is used to record the location and number of bulk damage sites and determine a calibration factor between the scatter signal observed and damage density. We illustrate the method with a determination of both bulk damage density as a function of laser fluence and of a representative size distribution in a DKDP crystal. Our method is capable of determining damage densities with an absolute uncertainty of +/- 0.3 pinpoint damage sites per cubic millimetre (pp mm(-3)) in the range 1-100 pp mm(-3) with our minimum detectable density being 0.01 pp mm(-3). We also determined the pps produced by laser pulses of 351 nm, 3 ns light to have a mean diameter of 5.5 +/- 2.5 mu m (1/e(2)).
机译:表征光学材料中激光引起的损坏对于激光设计和操作很重要。先前的评估光学材料对大功率激光辐射的抵抗力的方法通常遭受激光能量输出的逐次不确定性和/或灵敏度不足。更重要的是,这样的方法没有解决对于激光束传播很重要的激光引起的损坏,即损坏造成的光散射量。我们提出了一种方法,用于将表面或大部分光学材料中的材料修饰与激光参数进行定量关联,从而消除了激光输出不稳定性的影响。在图像分析中,直接比较两张图像,一个是注量空间分布图,另一个是损伤的可见光散射图像,以提取散射量作为注量的函数。使用自动显微镜记录大量损伤部位的位置和数量,并确定观察到的散射信号与损伤密度之间的校准因子。我们用确定激光束能量密度和DKDP晶体中代表性尺寸分布的总体损伤密度的方法来说明该方法。我们的方法能够确定损坏密度,绝对不确定度为每立方毫米(pp mm(-3))+/- 0.3精确损坏点,范围为1-100 pp mm(-3),最小可检测密度为0.01 pp毫米(-3)。我们还确定了由351 nm,3 ns的激光脉冲产生的pps具有5.5 +/- 2.5μm(1 / e(2))的平均直径。

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