材料科学
偏振器
紫外线
光电子学
航程(航空)
光学
网格
双折射
地质学
大地测量学
物理
复合材料
作者
Thomas Siefke,Stefanie Kroker,Kristin Pfeiffer,Oliver Puffky,Kay Dietrich,Daniel Franta,Ivan Ohlı́dal,Adriana Szeghalmi,Ernst‐Bernhard Kley,Andreas Tünnermann
标识
DOI:10.1002/adom.201600250
摘要
Wire grid polarizers (WGPs), periodic nano‐optical metasurfaces, are convenient polarizing elements for many optical applications. However, they are still inadequate in the deep ultraviolet spectral range. It is shown that to achieve high performance ultraviolet WGPs a material with large absolute value of the complex permittivity and extinction coefficient at the wavelength of interest has to be utilized. This requirement is compared to refractive index models considering intraband and interband absorption processes. It is elucidated why the extinction ratio of metallic WGPs intrinsically humble in the deep ultraviolet, whereas wide bandgap semiconductors are superior material candidates in this spectral range. To demonstrate this, the design, fabrication, and optical characterization of a titanium dioxide WGP are presented. At a wavelength of 193 nm an unprecedented extinction ratio of 384 and a transmittance of 10% is achieved.
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