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具有金刚石亚波长光栅的中红外消色差半波片的设计、制造及性能分析

Design, manufacturing, and performance analysis of mid-infrared achromatic half-wave plates with diamond subwavelength gratings.

作者信息

Delacroix Christian, Forsberg Pontus, Karlsson Mikael, Mawet Dimitri, Absil Olivier, Hanot Charles, Surdej Jean, Habraken Serge

机构信息

Hololab, Université de Liège, Allée du 6 Août 17 B5a, B-4000 Liège, Belgium.

出版信息

Appl Opt. 2012 Aug 20;51(24):5897-902. doi: 10.1364/AO.51.005897.

Abstract

In this paper, we present a solution for creating robust monolithic achromatic half-wave plates (HWPs) for the infrared, based on the form birefringence of subwavelength gratings (SWGs) made out of diamond. We use the rigorous coupled wave analysis to design the gratings. Our analysis shows that diamond, besides its outstanding physical and mechanical properties, is a suitable substrate to manufacture mid-infrared HWPs, thanks to its high refractive index, which allows etching SWGs with lower aspect ratio. Based on our optimized design, we manufactured a diamond HWP for the 11-13.2 μm region, with an estimated mean retardance ~3.143±0.061 rad (180.08±3.51°). In addition, an antireflective grating was etched on the backside of the wave plate, allowing a total transmittance between 89% and 95% over the band.

摘要

在本文中,我们基于由金刚石制成的亚波长光栅(SWG)的形式双折射,提出了一种用于制造坚固的红外单片消色差半波片(HWP)的解决方案。我们使用严格耦合波分析来设计光栅。我们的分析表明,金刚石除了具有出色的物理和机械性能外,还是制造中红外HWP的合适衬底,这得益于其高折射率,使得能够以较低的纵横比蚀刻SWG。基于我们的优化设计,我们制造了一个用于11 - 13.2μm波段的金刚石HWP,估计平均相位延迟约为3.143±0.061 rad(180.08±3.51°)。此外,在波片背面蚀刻了一个抗反射光栅,使得该波段的总透过率在89%至95%之间。

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