光电探测器
极化(电化学)
响应度
旋光法
光学
光电子学
材料科学
探测器
等离子体子
红外线的
物理
物理化学
化学
散射
作者
Mingjin Dai,Chongwu Wang,Bo Qiang,Yuhao Jin,Ming Ye,Fakun Wang,Fangyuan Sun,Xuran Zhang,Yu Luo,Qi Jie Wang
标识
DOI:10.1038/s41467-023-39071-7
摘要
Filter-free miniaturized polarization-sensitive photodetectors have important applications in the next-generation on-chip polarimeters. However, their polarization sensitivity is thus far limited by the intrinsic low diattenuation and inefficient photon-to-electron conversion. Here, we implement experimentally a miniaturized detector based on one-dimensional tellurium nanoribbon, which can significantly improve the photothermoelectric responses by translating the polarization-sensitive absorption into a large temperature gradient together with the finite-size effect of a perfect plasmonic absorber. Our devices exhibit a zero-bias responsivity of 410 V/W and an ultrahigh polarization ratio (2.5 × 104), as well as a peak polarization angle sensitivity of 7.10 V/W•degree, which is one order of magnitude higher than those reported in the literature. Full linear polarimetry detection is also achieved with the proposed device in a simple geometrical configuration. Polarization-coded communication and optical strain measurement are demonstrated showing the great potential of the proposed devices. Our work presents a feasible solution for miniaturized room-temperature infrared photodetectors with ultrahigh polarization sensitivity.
科研通智能强力驱动
Strongly Powered by AbleSci AI