材料科学
光电探测器
响应度
光电子学
旋光法
等离子体子
极化(电化学)
消光比
光学
纳米线
夜视
红外线的
比探测率
图像传感器
微测辐射热计
波长
光探测
吸收(声学)
近红外光谱
彩色滤光片阵列
电压
半导体
偏压
热辐射计
雷
光刻胶
消光(光学矿物学)
探测器
表面等离子体子
导模共振
作者
Longsibo Huang,Ziyuan Li,Yi Yang,Yu Yang,Lei Xu,Li Li,Songqin Zhang,Han Wang,Wenwu Pan,Chaohao Chen,Weiqi Jin,Wen Lei,L. Faraone,Chennupati Jagadish,Lan Fu
摘要
ABSTRACT Polarization‐sensitive photodetectors can enhance the capability of target recognition in intelligent driving, security monitoring, and biomedical diagnostics. However, miniaturizing such devices to subwavelength scales introduces a fundamental trade‐off between light absorption efficiency and polarization extinction ratio. To address this, we integrate ultrathin metasurface polarization filter arrays (MPFAs) onto GaAsSb nanowire (NW) array photodetectors. The GaAsSb NW array geometry was designed and optimized for 93.5% average absorption across a broad wavelength range from 660 to 840 nm, to exhibit a high photodetector peak responsivity of 2.0 A W −1 and a specific detectivity of 4.3×10 10 cm•√Hz W −1 under a low bias voltage of 1 V. The L‐shaped silver nanohole MPFA was designed and fabricated via focused ion beam, generating strong polarization‐selective plasmonic resonance in the near‐infrared region. This leads to the demonstration of an integrated device with a linear polarization extinction ratio of 3.5 and good device performance (peak responsivity of 1.5 A W −1 and detectivity of 2.3×10 10 cm•√Hz W −1 ), enabling high‐resolution single‐pixel polarimetric imaging. The direct metasurface/III‐V semiconductor NW array integration strategy provides a new route toward next‐generation ultra‐compact, high‐performance polarimetric infrared imaging systems covering a broad spectrum from the near‐ to mid‐wave infrared for diverse applications.
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