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X-ray-ultraviolet beam splitters for the Michelson interferometer

机译:用于迈克尔逊干涉仪的X射线紫外线分束器

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摘要

With the aim of realizing a Michelson interferometer working at 13.9 nm, we have developed a symmetrical beam splitter with multilayers deposited on the front and back sides of a silicon nitride membrane. On the basis of the experimental optical properties of the membrane, simulations have been performed to define the multilayer structure that provides the highest reflectivity-transmission product. Optimized Mo-Si multilayers have been successfully deposited on both sides of the membrane by use of the ion-beam sputtering technique, with a thickness-period reproducibility of 0.1 nm. Measurements by means of synchrotron radiation at 13.9 nm and at an angle of 45° provide a reflectivity of 14.2% and a transmission of 15.2% for a 60% s-polarized light, close to the simulated values. Such a beam splitter has been used for x-ray laser Michelson interferometry at 13.9 nm. The first interferogram is discussed.
机译:为了实现工作在13.9 nm的迈克尔逊干涉仪,我们开发了一种对称的分束器,其多层膜沉积在氮化硅膜的正面和背面。基于膜的实验光学性质,已经进行了模拟以定义提供最高反射率-透射产物的多层结构。通过使用离子束溅射技术,已成功地在膜的两侧成功沉积了优化的Mo-Si多层膜,其厚度周期可重复性为0.1 nm。通过60°s偏振光的13.9 nm同步辐射和45°角的测量,反射率达到14.2%,透射率达到15.2%,接近模拟值。这种分束器已经用于13.9nm的X射线激光迈克尔逊干涉测量。讨论第一干涉图。

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