On-chip ultra-high rejection and narrow bandwidth filter based on coherency-broken cascaded cladding-modulated gratings

Author:

Wang Jinzhao1,Li Ting2,Feng Yang1,Li Jiewen1,Li Wanxin1,Ding Luwei1,Yao Yong1,Duan Jianan1ORCID,Liu Wei1ORCID,He Feng1ORCID,Zou Yi2ORCID,Xu Xiaochuan1

Affiliation:

1. Harbin Institute of Technology

2. ShanghaiTech University

Abstract

Bragg filters are of essential importance for chip-scale photonic systems. However, the implementation of filters with sub-nanometer bandwidth and rejection beyond 70 dB is hindered by the high index contrast of the silicon-on-insulator platform, which makes filters prone to fabrication imperfections. In this paper, we propose to combine coherency-broken cascading architecture and cladding modulation to circumvent the intrinsic limitation. The cascading architecture effectively prevents the accumulation of phase errors, while the cladding modulation offers additional design freedom to reduce the coupling coefficient. A bimodal Bragg filter with a testing-equipment-limited rejection level of 74 dB and a 40 dB bandwidth of 0.44 nm is experimentally demonstrated. The minimum feature size is 90 nm, which significantly relieves the fabrication constraints.

Funder

Basic and Applied Basic Research Foundation of Guangdong Province

Science, Technology and Innovation Commission of Shenzhen Municipality

National Natural Science Foundation of China

Publisher

Optica Publishing Group

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