All‐Optical Organic–Inorganic Hybrid Waveguide Switches Based on Photothermal Effect of Au‐MOF Composites

Author:

Cui Anqi1,Miao Xiaoya1,Yue Jian1,Sun Xiangyi1,Yu Qidong1,Zhang Daming1,Zhang Tong1,Fei Teng1,Chen Changming1ORCID

Affiliation:

1. State Key Laboratory of Integrated Optoelectronics College of Electronic Science and Engineering Jilin University Changchun 130012 P. R. China

Abstract

AbstractIn this study, all‐optical organic–inorganic hybrid waveguide switches are proposed based on the photothermal effect of Au‐MOF composites. The embedded waveguide structure is directly defined using SiO2 grooves on a silicon substrate. Self‐synthesized Au‐MOF/PMMA and SiO2‐TiO2 network grafting PMMA are used as the core and cladding materials, respectively. The organic–inorganic hybrid shielding layer is formed using an oxygen ion etching process to avoid corrosion from the cladding solvent. A directional coupling switching structure is designed and fabricated. The switching time of the all‐optical device is 500 µs, the photothermal tuning sensitivity is 19.10 nm mW−1, the driving optical power consumption is 0.67 mW, and the extinction ratio is close to 9.83 dB. This technique is desirable for photothermal control of light in an all‐optical signal‐processing network.

Funder

National Natural Science Foundation of China

Jilin Provincial Scientific and Technological Development Program

Publisher

Wiley

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