Inorganic perovskite-based active multifunctional integrated photonic devices

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作者
Qi Han
Jun Wang
Shuangshuang Tian
Shen Hu
Xuefeng Wu
Rongxu Bai
Haibin Zhao
David W. Zhang
Qingqing Sun
Li Ji
机构
[1] Fudan University,State Key Laboratory of ASIC & System, School of Microelectronics
[2] Fudan University,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 Sh
[3] Jiashan Fudan Institute,precision Optical Manufacturing Engineering Research Center
[4] Zhangjiang Fudan International Innovation Center,undefined
[5] Hubei Yangtze Memory Laboratories,undefined
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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 CsPbBr3 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.
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