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用于多光谱红外偏振成像的超材料微测辐射热计。

Metamaterial microbolometers for multi-spectral infrared polarization imaging.

作者信息

Jiang Shun, Li Jinzhao, Li Junyu, Lai Jianjun, Yi Fei

出版信息

Opt Express. 2022 Mar 14;30(6):9065-9087. doi: 10.1364/OE.452981.

DOI:10.1364/OE.452981
PMID:35299344
Abstract

Vanadium oxide (VO) microbolometers enable the construction of high-performance yet low-cost and uncooled imaging detectors in the mid-infrared spectrum. Typical micro-bolometers are broadband sensors with no polarization selectivity. Thus, imaging detectors based on microbolometers have to use separate spectral and polarization filters to select the target spectral bands and polarization states, and the resulting systems are complicated and bulky. Here we demonstrate that by using metamaterial absorbers (MAs), which are arrays of optical resonators with sub-wavelength dimensions and spacing, we simultaneously tailor the VO microbolometers' spectral and polarization responses, the need for separate spectral filters and polarizers can be mitigated. The MAs selectively absorb the TM polarization component of the incident light in a spectral band with tunable central wavelength and bandwidth while rejecting the TE polarization component. Two MAs with average TM absorption of 0.8322 in the 5.150 µm - 6.422 µm band and 0.7720 in the 5.867 µm - 7.467 µm band are fabricated, and the polarization extinction ratio (PER) are 42.24 and 42.65, respectively. The MAs are applied to VO micro-bolometers, and the measured detector responses agree well with the absorption spectra of the MAs. The achieved peak responsivities of two fabricated detectors are 1.0 V/W at 6.0 µm and 1.46 V/W at 6.8 µm, respectively. And the two detectors achieve a D* of 6.94×10 cm·HzW at 11Hz and 9.95×10 cm·HzW at 36Hz, respectively. Our work paved the way towards large format room temperature multi-spectral infrared polarization imaging detector.

摘要

氧化钒(VO)微测辐射热计能够构建高性能、低成本且无需制冷的中红外光谱成像探测器。典型的微测辐射热计是没有偏振选择性的宽带传感器。因此,基于微测辐射热计的成像探测器必须使用单独的光谱和偏振滤波器来选择目标光谱带和偏振态,而由此产生的系统复杂且庞大。在此我们证明,通过使用超材料吸收体(MA),即具有亚波长尺寸和间距的光学谐振器阵列,我们可以同时调整VO微测辐射热计的光谱和偏振响应,从而减少对单独光谱滤波器和偏振器的需求。MA在具有可调中心波长和带宽的光谱带中选择性吸收入射光的TM偏振分量,同时抑制TE偏振分量。制备了两个MA,在5.150 µm - 6.422 µm波段平均TM吸收率为0.8322,在5.867 µm - 7.467 µm波段平均TM吸收率为0.7720,偏振消光比(PER)分别为42.24和42.65。将MA应用于VO微测辐射热计,测量得到的探测器响应与MA的吸收光谱吻合良好。所制备的两个探测器实现的峰值响应率分别在6.0 µm处为1.0 V/W,在6.8 µm处为1.46 V/W。并且这两个探测器在11Hz时分别实现了6.94×10 cm·HzW的探测率,在36Hz时分别实现了9.95×10 cm·HzW的探测率。我们的工作为大幅面室温多光谱红外偏振成像探测器铺平了道路。

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