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用于全色圆偏振光检测的自旋探测器。

Spin detector for panchromatic circularly polarized light detection.

作者信息

Yang Lvpeng, Gao Yerun, Wang Zhenye, Yang Long, Shao Ming

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Nat Commun. 2025 May 5;16(1):4161. doi: 10.1038/s41467-025-59287-z.

Abstract

Circularly polarized light (CPL) detection is crucial for optical communication, bioimaging and quantum computing. However, CPL detectors based on chiral low-dimensional perovskites face a trade-off between optoelectronic performance and CPL discrimination, and typically exhibit a CPL response within a narrow spectral range. Here, we overcome these limitations by integrating three-dimensional (3D) and chiral-two-dimensional (2D) perovskites. The 3D perovskite serving as the photoabsorption layer extends the detection range to 760 nm and enhances optoelectronic responses, while also generating spin-polarized carriers through large Rashba splitting. The chiral-2D perovskite achieves spin filtering efficiency up to 80%. The synergy between spin polarization and chiral-induced spin selectivity processes enables a panchromatic CPL response, with a photocurrent asymmetry factor exceeding 0.28 across the visible spectrum and peaking at 0.35. Furthermore, our detector achieves a detectivity of 3.7×10 Jones. Our work introduces a spin manipulation strategy for panchromatic CPL detection, expanding the scope of spintronics applications.

摘要

圆偏振光(CPL)检测对于光通信、生物成像和量子计算至关重要。然而,基于手性低维钙钛矿的CPL探测器在光电性能和CPL辨别能力之间面临权衡,并且通常在窄光谱范围内表现出CPL响应。在此,我们通过整合三维(3D)和手性二维(2D)钙钛矿克服了这些限制。用作光吸收层的3D钙钛矿将检测范围扩展至760纳米,并增强了光电响应,同时还通过大的Rashba分裂产生自旋极化载流子。手性2D钙钛矿实现了高达80%的自旋过滤效率。自旋极化与手性诱导自旋选择性过程之间的协同作用实现了全色CPL响应,在可见光谱范围内光电流不对称因子超过0.28,并在0.35处达到峰值。此外,我们的探测器实现了3.7×10琼斯的探测率。我们的工作引入了一种用于全色CPL检测的自旋操纵策略,扩展了自旋电子学应用的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41d8/12053581/3d4bb1211b9b/41467_2025_59287_Fig1_HTML.jpg

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