Monochromators with single grating rotation and holographic gratings on toroidal blanks for vacuum ultraviolet

D. Lepère
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引用次数: 25

Abstract

Monochromators having a very single scanning mechanism similar to the Seya-Namioka type [1] have been designed in the past for the V. U. V. spectral range. They are working generally at normal incidence, the angle between the two fixed beams being chosen less than 70° in order to reduce the amount of astigmatism (ASM 50 [2] or H 20 monochromators manufactured by Jobin-Yvon). However such type of mountings are presently limited at wavelengths longer than 800 A by the low efficiency of the reflecting power of the coatings generally used. At high incidence angle, we find low efficiency caused by astigmatism, accompanied by an equivalent reduction in energy throughput. Efforts have been made to correct this astigmatism in part by using a holographic grating. However, for short wavelengths at grazing incidence, a spherical concave holographic grating cannot have much effect on the astigmatism. This has led us to using toroidal blanks.
单光栅旋转单色仪和环形坯上的全息光栅用于真空紫外
单色仪具有非常单一的扫描机制,类似于Seya-Namioka型[1],过去已设计用于紫外光谱范围。它们通常在正入射下工作,两个固定光束之间的角度被选择小于70°,以减少散光的数量(ASM 50[2]或join - yvon制造的h20单色器)。然而,由于通常使用的涂层的反射能力效率低,这种类型的安装目前限制在波长超过800 A的范围内。在高入射角,我们发现低效率引起的散光,伴随着等效的减少能量吞吐量。人们已经通过使用全息光栅来部分地纠正这种散光。然而,对于波长较短的掠射入射,球面凹面全息光栅对像散的影响不大。这导致我们使用环形毛坯。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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