材料科学
光子学
光电子学
半导体
光电探测器
波导管
光电流
激光器
光子集成电路
纳米技术
光学
物理
作者
Sha Jiang,Xing Xu,Chao Fan,Long Chen,Lei Shen,Qi Deng,Xue Xia,Qinglin Zhang
标识
DOI:10.1002/adom.202300596
摘要
Abstract 1D semiconductor wires have great potential in on‐chip integrated photonics systems. However, it is still challenging to efficiently integrate various semiconductor wires on a large scale for complex functional devices. This study reports a universal route to in‐plane integrate unidirectional metal halide perovskite CsPbBr 3 wire arrays with Sb 2 Se 3 , PbSeand CdS wires on mica substrates, respectively. It is found that the growth of the unidirectional wire arrays is controlled by a synergistic effect of the promoted initial nucleation on the transferred heterogeneous wires and the thermodynamically favored epitaxy on mica. The optical characterizations show that the CsPbBr 3 wire arrays can act as both the light emitting media and waveguide, where the emission in the CsPbBr 3 wires can be efficiently guided into the backbone Sb 2 Se 3 wire. Importantly, the constructed CsPbBr 3 waveguide arrays/Sb 2 Se 3 wire photodetector system shows 73.4 nA photocurrent with the on/off ratio of 111, by exciting the CsPbBr 3 wires at 174 mW cm −2 of 405 nm laser. The frequency dependent photoresponse characterizations exhibit a response capability of 2000 Hz modulated laser pulse and a 3 dB frequency above 300 Hz, indicating the rapid response speed. This study promotes the application of semiconductor wires in on‐chip multifunctional integrated photonic devices.
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