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Achieving Infinite Polarization Ratio in Photodetectors Using In-Plane Anisotropic 2D Materials and Back-to-Back Schottky Structures

  • Shaofeng Wen
  • , Changyong Lan*
  • , Rui Zhang
  • , Shuren Zhou
  • , Chun Li
  • , Yi Yin
  • , Johnny C. Ho
  • , Yong Liu
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Polarization photodetectors offer significant potential in target recognition, quantum physics, and astronomical observations. However, conventional polarization photodetectors often require additional optical components, increasing the devices' complexity and size. Moreover, the limited polarization ratio in photodetectors utilizing anisotropic materials presents a major challenge, hindering their practical applications. In this study, we introduce an innovative approach using a vertically aligned back-to-back Schottky barrier structure, with anisotropic 2D material as the photosensitive unit, to develop a polarization photodetector with an infinite polarization ratio. The distinct differences in light absorption for x- and y-polarizations are crucial in creating a 90° shift in polarization-dependent photocurrents between the top and bottom Schottky diodes. This feature allows for precise modulation of the polarization ratio through bias voltage adjustment, enabling a transition from a finite value to infinity. Significantly high polarization ratios are achieved in ReSe2- and PdPSe-based devices, with values of 2.89 × 104 and 300, respectively. Our research offers a simplified design for polarization photodetectors with an infinite polarization ratio, presenting significant potential for advancements in optoelectronics. © 2026 Wiley-VCH GmbH.
Original languageEnglish
Article numbere02842
JournalLaser and Photonics Reviews
Online published4 Jan 2026
DOIs
Publication statusOnline published - 4 Jan 2026

Funding

This work was supported by the National Natural Science Foundationof China (Grant Nos. 62074024 and 62575052), the Sichuan Science andTechnology Program (Grant Nos. 2023YFH0090 and 2023NSFSC0365),and the Natural Science Foundation of Sichuan Province (Grant No.2022NSFSC0042).

Research Keywords

  • anisotropy 2D material
  • polarization photodetector
  • polarization ratio
  • schottky barrier

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