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基于无机钙钛矿的有源多功能集成光子器件。

Inorganic perovskite-based active multifunctional integrated photonic devices.

作者信息

Han Qi, Wang Jun, Tian Shuangshuang, Hu Shen, Wu Xuefeng, Bai Rongxu, Zhao Haibin, Zhang David W, Sun Qingqing, Ji Li

机构信息

State Key Laboratory of ASIC & System, School of Microelectronics, Fudan University, Shanghai, 200433, China.

Department of Optical Science and Engineering, School of Information Science and Technology, Key Laboratory of Micro & Nano Photonic Structures, Shanghai Frontiers Science Research Base of Intelligent Optoelectronics and Perception, and Shanghai Ultra-precision Optical Manufacturing Engineering Research Center, Fudan University, Shanghai, 200433, China.

出版信息

Nat Commun. 2024 Feb 20;15(1):1536. doi: 10.1038/s41467-024-45565-9.

Abstract

The development of highly efficient active integrated photonic circuits is crucial for advancing information and computing science. Lead halide perovskite semiconductors, with their exceptional optoelectronic properties, offer a promising platform for such devices. In this study, active micro multifunctional photonic devices were fabricated on monocrystalline CsPbBr perovskite thin films using a top-down etching technique with focused ion beams. The etched microwire exhibited a high-quality micro laser that could serve as a light source for integrated devices, facilitating angle-dependent effective propagation between coupled perovskite-microwire waveguides. Employing this strategy, multiple perovskite-based active integrated photonic devices were realized for the first time. These devices included a micro beam splitter that coherently separated lasing signals, an X-coupler performing transfer matrix functions with two distinguishable light sources, and a Mach-Zehnder interferometer manipulating the splitting and coalescence of coherent light beams. These results provide a proof-of-concept for active integrated functionalized photonic devices based on perovskite semiconductors, representing a promising avenue for practical applications in integrated optical chips.

摘要

高效有源集成光子电路的发展对于推动信息和计算科学至关重要。卤化铅钙钛矿半导体凭借其卓越的光电特性,为这类器件提供了一个有前景的平台。在本研究中,使用聚焦离子束的自上而下蚀刻技术在单晶CsPbBr钙钛矿薄膜上制备了有源微多功能光子器件。蚀刻后的微线展现出高质量的微激光器,可作为集成器件的光源,促进耦合钙钛矿 - 微线波导之间的角度相关有效传播。采用这种策略,首次实现了多个基于钙钛矿的有源集成光子器件。这些器件包括一个相干分离激光信号的微光束分离器、一个对两个可区分光源执行传输矩阵功能的X耦合器,以及一个操纵相干光束分裂和合并的马赫 - 曾德尔干涉仪。这些结果为基于钙钛矿半导体的有源集成功能化光子器件提供了概念验证,代表了集成光学芯片实际应用的一条有前景的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0496/10879536/28199c70b35b/41467_2024_45565_Fig1_HTML.jpg

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