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Construction of rugged, ultrastable optical assemblies with optical component alignment at the few microradian level

机译:构造坚固,超稳定的光学组件,光学元件对准在少数微弧级

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摘要

A method for constructing quasimonolithic, precision-aligned optical assemblies is presented. Hydroxide-catalysis bonding is used, adapted to allow optimization of component fine alignment prior to the bond setting. We demonstrate the technique by bonding a fused silica mirror substrate to a fused silica baseplate. In-plane component placement at the submicrometer level is achieved, resulting in angular control of a reflected laser beam at the sub-10-μrad level. Within the context of the LISA Pathfinder mission, the technique has been demonstrated as suitable for use in space-flight applications. It is expected that there will also be applications in a wide range of areas where accuracy, stability, and strength of optical assemblies are important.
机译:提出了一种用于构造准单片,精确对准的光学组件的方法。使用氢氧化物催化键合,其适于在键合设置之前优化组件的精细对准。我们通过将熔融石英镜基板粘合到熔融石英基板来演示该技术。实现了亚微米级平面内组件的放置,从而将反射激光束的角度控制在亚10μrad水平。在LISA探路者任务的背景下,该技术已被证明适用于航天应用。预计还将在光学组件的精度,稳定性和强度很重要的广泛领域中应用。

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