光电探测器
光电子学
极化(电化学)
宽带
材料科学
异质结
各向异性
响应度
光学
光通信
比探测率
光子学
线极化
动态范围
布鲁斯特角
红外线的
双折射
纳米光子学
正交偏振光谱成像
通信系统
作者
Shuaitao Zhang,Liu Z,X Zhao,N Zhang,Yuting Zou,Liujian Qi,Yuping Jia,Shaojuan Li
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-06-04
卷期号:13 (12): 3347-3356
标识
DOI:10.1021/acsphotonics.6c00319
摘要
Polarization-sensitive photodetectors enable the decoding of light polarization states, thereby improving target contrast and revealing subtle surface structural details in complex imaging scenarios. However, achieving high polarization ratios over a broad spectral range remains a key challenge. In this work, we demonstrate a van der Waals (vdW) heterostructure polarization photodetector based on two-dimensional (2D) materials ReS 2 and 2H-MoTe 2 . Benefiting from the in-plane anisotropic crystal structure and synergistic effects of the interfacial field, the device presents excellent polarization-sensitive photoresponse, spanning broadband from 532 to 1064 nm. Specifically, it can achieve a polarization ratio (PR) of 8.1 and significantly low noise equivalent polarization difference of 0.0001° Hz –1/2, highlighting its strong potential for high-precision polarization detection. Meanwhile, high responsivity ( R ) and specific detectivity ( D *) of up to 58.5 A/W and 0.6 × 10 12 Jones are attained, respectively. Proof-of-concept validations via broadband polarization imaging and dual-channel optical communication further reveal its operational versatility. This work paves a promising pathway for developing next-generation polarization-encoded imaging systems and multidimensional optoelectronic information processors based on 2D anisotropic heterostructures.
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