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长波长红外波段的线性偏振分离超表面透镜

Linear polarization-separating metalens at long-wavelength infrared.

作者信息

Ishizuka Noe, Li Jie, Fuji Wataru, Ikezawa Satoshi, Iwami Kentaro

出版信息

Opt Express. 2023 Jul 3;31(14):23372-23381. doi: 10.1364/OE.492918.

Abstract

We designed and fabricated a linear polarization-separation metalens (PSM) made of single-crystal silicon (sc-Si) for long-wavelength infrared (LWIR) imaging. The PSM comprises sc-Si dielectric waveguide pillar meta-atoms with rectangular cross-sections, providing a full 2π phase delay range for two orthogonal linear polarization components with high transmittances (>70%). Electron beam lithography and deep reactive ion etching were used to fabricate the PSM. Polarization-separation imaging of elevated and ambient temperature objects was demonstrated with high extinction ratios of 21.8 dB and 12.8 dB for the x- and y-polarizations, respectively. Additionally, polarization-sensitive imaging was demonstrated by distinguishing the surfaces of a hand and toy windows. Our work enables the visualization of invisible information in the LWIR region and has widespread applications.

摘要

我们设计并制造了一种由单晶硅(sc-Si)制成的用于长波红外(LWIR)成像的线性偏振分离超表面(PSM)。该PSM由具有矩形横截面的sc-Si介质波导柱超原子组成,为两个具有高透射率(>70%)的正交线性偏振分量提供了完整的2π相位延迟范围。采用电子束光刻和深反应离子刻蚀技术制造了该PSM。对于x偏振和y偏振,分别以21.8 dB和12.8 dB的高消光比展示了高温和常温物体的偏振分离成像。此外,通过区分手和玩具窗户的表面展示了偏振敏感成像。我们的工作能够实现LWIR区域中不可见信息的可视化,并具有广泛的应用。

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