The Intelligent Design of Silicon Photonic Devices

Author:

Li Zean12ORCID,Zhou Zhipeng12,Qiu Cheng13ORCID,Chen Yongyi14,Liang Bohan12,Wang Yubing1,Liang Lei1,Lei Yuxin1,Song Yue1,Jia Peng1,Zeng Yugang1,Qin Li1,Ning Yongqiang1,Wang Lijun1

Affiliation:

1. State Key Laboratory of Luminescence and Applications Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Changchun Economic and Technological Development Zone 3888 Dongnanhu Road Changchun Jilin 130033 China

2. University of Chinese Academy of Sciences 1 Yanqihu East Rd, Huairou District Beijing 100049 China

3. Xiongan Innovation Institute Chinese Academy of Sciences Xiongxian County Xiongan New Area Hebei 071899 China

4. Jlight Semiconductor Technology Co., Ltd. Economic and Technological Development Zone No. 1588, Changde Road Changchun Jilin 130033 China

Abstract

AbstractPhotonic devices based on silicon waveguides are essential to versatile high‐performance and low‐cost photonic integrated systems. Extremely complex silicon photonic devices with hundreds or even thousands of degrees of freedom (DOF) are successfully designed and manufactured based on recent advances in data science and nanofabrication technology. At this level, conventional forward‐reasoning may no longer be suitable for designing high‐performance silicon photonic devices with novel functionalities since the light‐matter interaction is complex and non‐intuitive. Therefore, the timely development of sub‐wavelength silicon photonic devices that can precisely mold the flow of light is a critical and urgent issue requiring joint engineering and scientific efforts. In this paper, an inverse design strategy based on heuristic and gradient descendant algorithms, enabling the realization of large‐scale integrated devices is first introduced. Subsequently, the burgeoning deep learning technology, which offers a promising direction for the automation design of silicon photonics with a data‐driven approach, is discussed. Finally, the obstacles and prospects in this emerging research direction are revealed. Detail discussions from multiple perspectives are provided. This review aims to provide general guidance and a comprehensive reference for scientists developing photonic integrated systems.

Funder

National Key Scientific Instrument and Equipment Development Projects of China

Publisher

Wiley

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