Power-Efficient Silicon Nitride Thermo-Optic Phase Shifters for Visible Light
Abstract
We demonstrate power-efficient, thermo-optic, silicon nitride waveguide phase shifters for blue, green, and yellow wavelengths. The phase shifters operated with low power consumption due to a suspended structure and multi-pass waveguide design. The devices were fabricated on 200-mm silicon wafers using deep ultraviolet lithography as part of an active visible-light integrated photonics platform. The measured power consumption to achieve a phase shift (averaged over multiple devices) was 0.78, 0.93, 1.09, and 1.20 mW at wavelengths of 445, 488, 532, and 561 nm, respectively. The phase shifters were integrated into Mach-Zehnder interferometer switches, and \% rise(fall) times of about 570(590) s were measured.
Cite
@article{arxiv.2111.07890,
title = {Power-Efficient Silicon Nitride Thermo-Optic Phase Shifters for Visible Light},
author = {Zheng Yong and Hong Chen and Xianshu Luo and Alperen Govdeli and Hongyao Chua and Saeed S. Azadeh and Andrei Stalmashonak and Guo-Qiang Lo and Joyce K. S. Poon and Wesley D. Sacher},
journal= {arXiv preprint arXiv:2111.07890},
year = {2022}
}
Comments
Zheng Yong and Hong Chen contributed equally to this work