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用于迈克尔逊干涉仪的X射线-紫外线分束器。

X-ray-ultraviolet beam splitters for the Michelson interferometer.

作者信息

Delmotte Franck, Ravet Marie-Françoise, Bridou Françoise, Varnière Françoise, Zeitoun Philippe, Hubert Sébastien, Vanbostal Laurent, Soullie Gérard

机构信息

Laboratoire Charles Fabry de l'Institut d'Optique, Centre National de la Recherche Scientifique, Orsay, France.

出版信息

Appl Opt. 2002 Oct 1;41(28):5905-12. doi: 10.1364/ao.41.005905.

Abstract

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 t he 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 degrees 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.

摘要

为了实现一台工作在13.9纳米的迈克尔逊干涉仪,我们研制了一种对称分束器,在氮化硅薄膜的正面和背面都沉积了多层膜。基于该薄膜的实验光学特性,进行了模拟以确定能提供最高反射率-透射率乘积的多层膜结构。利用离子束溅射技术,已成功在薄膜两侧沉积了优化的钼-硅多层膜,厚度周期重复性为0.1纳米。在13.9纳米和45度角下通过同步辐射进行的测量表明,对于60%的s偏振光,反射率为14.2%,透射率为15.2%,接近模拟值。这种分束器已用于13.9纳米的X射线激光迈克尔逊干涉测量。对第一张干涉图进行了讨论。

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