Yang Lvpeng, Gao Yerun, Wang Zhenye, Yang Long, Shao Ming
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074, China.
Nat Commun. 2025 May 5;16(1):4161. doi: 10.1038/s41467-025-59287-z.
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.
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。