Energy‐Saving High‐Bandwidth Perovskite Sub‐Micro‐Encoder

Author:

Liang Shuang1,Zhong Yichi23,Tang Bing2,Wang Qiangqiang1,Hu Yongsheng1,Wang Zhenyu1,Zhang Long2,Dong Hongxing2ORCID,Xie Wei1ORCID,Xu Hongxing14

Affiliation:

1. State Key Laboratory of Precision Spectroscopy School of Physics and Electronic Science East China Normal University Shanghai 200241 China

2. Key Laboratory of Materials for High‐Power Laser Shanghai Institute of Optics and Fine Mechanics Chinese Academy of Sciences Shanghai 201800 China

3. Department of Physics College of Mathematics and Physics Chengdu University of Technology Chengdu 610059 China

4. Center for Nanoscience and Nanotechnology and School of Physics and Technology Wuhan University Wuhan 430072 China

Abstract

AbstractOptical coding is widely applied in communication and data processing fields due to its practical and powerful characteristics, such as high transmission rate and operational convenience. However, improvements in the loading information capacity of optical encoders always result in increased energy consumption. It is a challenge to realize an optical encoder that combines energy savings, high bandwidth, and miniaturization. Here, both the concept and the demonstration of a perovskite sub‐micro‐encoder with an 84% energy‐saving efficiency and a tunable bandwidth of up to 200 GHz are reported. The way to code the radiative dynamics of the light source allows for the reduction of unnecessary energy consumption from the initial stage through the control of the radiation core. Moreover, the miniature encoder generates code sequences of good coherence, stimulating the development of perovskite‐based optical microchips for ultrafast information processing.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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