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Development of high-efficiency reflective grating by holographic processing for UV exoplanet science

机译:紫外线外科学科全息加工高效反光光栅的开发

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We present our development of high-efficiency reflective grating development by holographic processing. Its primary objective is to carry out exoplanet science studies in the ultraviolet (UV) wavelength region using space-borne telescopes. While the final development goal is aspheric grating, in this study, we manufactured planar grating samples with laminar and blazed grooves for our first step in order to establish processing conditions and to evaluate characteristics of each grating. Geometry of the manufactured gratings is 30×30×10 mm, and their groove density is 2400/mm. It was confirmed by Atomic Force Microscope (AFM) evaluation that laminar and blazed grooves were constructed on the surface of each grating. The measured absolute diffraction efficiency achieved by the brazed grating is 40.2% and 44.1% at wavelengths of 122 nm and 131 nm, respectively. These values are higher than values of the laminar grating by factor of ~1.5.
机译:我们通过全息加工展示了高效反光光栅开发的开发。其主要目标是使用空间传播望远镜在紫外(UV)波长区域中进行外产科学研究。虽然最终的发展目标是非球面光栅,但在这项研究中,我们制造了具有层流和炽热的凹槽的平面光栅样本,以便我们的第一步是建立加工条件并评估每个光栅的特性。制造光栅的几何形状为30×30×10mm,它们的槽密度为2400 / mm。通过原子力显微镜(AFM)评估确认,将层状和燃烧的凹槽构成在每个光栅的表面上。通过钎焊光栅实现的测量绝对衍射效率分别为122nm和131nm的波长为40.2%和44.1%。这些值高于层光栅的值〜1.5的光栅。

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