JOURNAL ARTICLE

Dual-Mode 2 × 2 Thermo-Optic Switch Based on Polymer Waveguide Mach-Zehnder Interferometer

Baizhu LinShijie SunXueqing SunTianhang LianMu ZhuYuanhua CheXibin WangDaming Zhang

Year: 2022 Journal:   IEEE Photonics Technology Letters Vol: 34 (24)Pages: 1317-1320   Publisher: Institute of Electrical and Electronics Engineers

Abstract

A dual-mode $2\times 2$ thermo-optic switch based on Mach-Zehnder interferometer with symmetric directional couplers is proposed and experimentally demonstrated by utilizing polymer waveguides. The present switch consists of two $2\times 2\,\,3$ -dB directional couplers, which are designed to be mode-insensitive by choosing the core separation and coupling length optimally. Meanwhile, a mode-insensitive phase shifter is employed to alter the phase of the two different modes simultaneously. With the switching power of ~9.0 mW, the measured extinction ratios for the E11 mode and E21 mode can reach to 17.5 dB and 16.4 dB, respectively, at 1550 nm, and the switching time is ~1.30 ms. The performance of the switch is also independent to the polarization state of light. Our proposed dual-mode switch with the advantages of low power-consumption can accommodate MDM system and would be applied in future large capacity communication systems.

Keywords:
Mach–Zehnder interferometer Phase shift module Interferometry Power dividers and directional couplers Dual mode Physics Waveguide Optics Optical switch Topology (electrical circuits) Insertion loss Electronic engineering Electrical engineering Engineering

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