首页> 外文会议>Annual Boulder damage symposium;Boulder damage symposium; 20080922-24;20080922-24; Boulder, CO(US);Boulder, CO(US) >Laser induced deflection (LID) technique for thermal lens evaluation and direct absorption measurements
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Laser induced deflection (LID) technique for thermal lens evaluation and direct absorption measurements

机译:激光感应偏转(LID)技术用于热透镜评估和直接吸收测量

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Thermal lens effects are one of the major problems in using optics for high power laser applications such as optical lithography or material processing. The thermal lens results from the combination of the absorption in the bulk material or the optical coatings, the thermal conductivity and the temperature change of the refractive index (dn/dT). We present how the laser induced deflection (LID) technique allows the direct and absolute measurement of the bulk and surface or coating absorption. The LID measurement signal, comprising of absorption, thermal conductivity and dn/dT, is directly used to compare the tendency to built thermal lenses in different optical materials. Furthermore, it is shown how the LID measurement signal in principle can be used to determine the thermo-optical material constants thermal conductivity and dn/dT. Regarding direct absorption measurements, a new experimental strategy is introduced to separate bulk from surface or coating absorption. Hereby, the closest attention is paid to measure directly the residual absorption of transparent optical coatings, e.g. single layers or AR coatings, with negligible contribution from the substrate absorption. In addition, numerical simulations of the thermal lens induced probe beam deflection are introduced, which allow to design optimized strategies for particular measurement problems.
机译:热透镜效应是在光学器件用于大功率激光应用(例如光刻或材料处理)中的主要问题之一。热透镜是由散装材料或光学涂层中的吸收,热导率和折射率的温度变化(dn / dT)结合而成的。我们介绍了激光诱导偏转(LID)技术如何允许直接和绝对测量体积,表面或涂层吸收。 LID测量信号(包括吸收,热导率和dn / dT)直接用于比较在不同光学材料中构建热透镜的趋势。此外,示出了LID测量信号原则上如何用于确定热光学材料常数的热导率和dn / dT。关于直接吸收测量,引入了一种新的实验策略,以从表面或涂层吸收中分离出大量物质。因此,应特别注意直接测量透明光学涂层例如玻璃的残留吸收。单层或增透膜,对基材吸收的影响可忽略不计。此外,还介绍了热透镜引起的探测光束偏转的数值模拟,从而可以针对特定的测量问题设计优化的策略。

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