Polarization-sensitive short-wave infrared photodetector with high responsivity enabled by PdSe2/Bi2O2Se heterostructure
Abstract
Short-wave infrared (SWIR) polarized detectors, renowned for their high-resolution imaging and atmospheric penetration capabilities, are pivotal for advancing autonomous navigation, industrial automation, and space communications. The responsivity of commercial InGaAs photodetectors (typically ∼1 A/W at 1550 nm) serves as a key benchmark for high-performance detection at this wavelength. However, achieving higher responsivity and potentially streamlining the fabrication process remain research goals. Herein, we present a PdSe2/Bi2O2Se heterostructure detector that synergistically utilizes the effective separation of photogenerated electron–hole pairs and photogating effect to achieve breakthrough performance in SWIR. A high responsivity of 21 A/W, an external quantum efficiency of 1680%, and a specific detectivity of 5.7 × 109 Jones at 1550 nm were demonstrated. Simultaneously, it achieves a fast response time (131/492 μs) and polarization-sensitive functionality. High-resolution SWIR and polarized light imaging were also demonstrated. These findings outline an approach to developing miniaturized, room-temperature SWIR detectors with high-performance metrics.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (9)
Yinan Wang
Department of Information and Computing Sciences, School of Mathematical Science, Peking University
Xinlei Zhang
Shizheng Wang
School of Physical Science and Technology, Nanjing Normal University 1 , Nanjing 210023,
Zhaofu Chen
School of Physical Science and Technology, Nanjing Normal University 1 , Nanjing 210023,
Peng Zhang
Fang Yang
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry College of Chemistry
Weiwei Zhao
Junpeng Lu
Hongwei Liu
The Australian Centre for Microscopy and Microanalysis