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Laser damage testing of optical components under cryogenic conditions

机译:低温条件下光学组件的激光损伤测试

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In this contribution we present a technology for deposition and testing of interference coatings for optical components designed to operate in power pulsed lasers. The aim of the technology is to prepare components for high power laser facilities such as ELI (Extreme Light Infrastructure) or HiLASE. ELI is a part of the European plan to build a new generation of large research facilities selected by the European Strategy Forum for Research Infrastructures (ESFRI). These facilities rely on the use of diode pumped solid state lasers (DPSSL). The choice of the material for the lasers' optical components is critical. Some of the most important properties include the ability to be antireflection and high reflection coated to reduce the energy losses and increase the overall efficiency. As large amounts of heat need to be dissipated during laser operation, cryogenic cooling is necessary. The conducted experiments served as preliminary tests of laser damage threshold measurement methodology that we plan to use in the future. We designed a special apparatus consisting of a vacuum chamber and a cooling system. The samples were placed into the vacuum chamber which was evacuated and then the samples were cooled down to approximately 120K and illuminated by a pulsed laser. Pulse duration was in the nanosecond region. Multiple test sites on the sample's surface were used for different laser pulse energies. We used optical and electron microscopy and spectrophotometer measurements for coating investigation after the conducted experiments.
机译:在这项贡献中,我们提出了一种用于沉积和测试干涉膜的技术,该干涉膜用于设计用于功率脉冲激光器的光学组件。该技术的目的是为高功率激光设施(例如ELI(极端轻型基础设施)或HiLASE)准备组件。 ELI是欧洲计划的一部分,该计划旨在建设由欧洲研究基础设施战略论坛(ESFRI)选择的新一代大型研究设施。这些设施依赖于二极管泵浦固态激光器(DPSSL)的使用。激光器光学组件的材料选择至关重要。一些最重要的属性包括抗反射和高反射涂层的能力,以减少能量损失并提高整体效率。由于在激光操作过程中需要散发大量热量,因此必须进行低温冷却。进行的实验是我们计划将来使用的激光损伤阈值测量方法的初步测试。我们设计了一种由真空室和冷却系统组成的特殊设备。将样品放入抽真空的真空室中,然后将样品冷却至约120K,并通过脉冲激光照射。脉冲持续时间在纳秒范围内。样品表面上的多个测试位置用于不同的激光脉冲能量。进行实验后,我们使用光学和电子显微镜以及分光光度计进行涂层研究。

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