Compact, Scalable, Fast‐Response Multimode 2 × 2 Optical Switch Based on Inverse Design

Author:

Sun Shangsen1,Tong Weiyu1,Yang Erqi1,Wu Bo1,Zhang Runsen2,Zhu Ning23,Hu Bin1,Gao Dingshan1,Dong Jianji14ORCID,Zhang Xinliang14

Affiliation:

1. Wuhan National Laboratory for Optoelectronics Huazhong University of Science and Technology Wuhan 430074 China

2. Institute of Semiconductor Science and Technology Guangdong Engineering Technology Research Center of Low Carbon and New Energy Materials South China Normal University Guangzhou 510631 China

3. SCNU Qingyuan Institute of Science and Technology Innovation Co., Ltd. Qingyuan 511517 China

4. Optics Valley Laboratory Wuhan 430074 China

Abstract

AbstractMode‐division multiplexing (MDM) introduces a new dimension to on‐chip optical interconnection, where the multimode optical switch is one of the core components. However, researchers are still struggling to reduce the chip size and response time, despite great efforts being made. Here, a compact, scalable, fast‐response multimode 2 × 2 switch supporting four modes is demonstrated based on the specific inverse design. The device consists of two multimode 2 × 2 CB couplers (including mode converters, multimode interference couplers, and crossings) and a thermo‐optic (TO) phase shifter. It achieves extinction ratios exceeding 15 dB for all modes at the central wavelength of 1.55 µm. All the fundamental components are designed by an improved general shape optimization method, realizing a compact size and a larger manufacturing tolerance (±20 nm). Besides, a hydrogen‐doped indium oxide microheater is introduced as a TO phase shifter to achieve a fast response (≈3.5 µs in average) for all modes. This solution provides an effective avenue toward large‐scale multimode optical switch matrices for the future MDM systems.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Publisher

Wiley

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