Efficient and compact sol-gel TiO2 thermo-optic microring resonator modulator

Author:

Chen Zequn12,Wei Maoliang1,Luo Ye2,Jian Jialing2,Ye Yuting2,Yin Yuexin3ORCID,Sun Chunlei2ORCID,Zhong Chuyu1ORCID,Si Ke1ORCID,Zhang Daming3ORCID,Lin Hongtao1ORCID,Li Lan2ORCID

Affiliation:

1. Zhejiang University

2. Westlake Institute for Advanced Study

3. Jilin University

Abstract

Thermo-optic (TO) modulators play an increasingly important role in wavelength routers, lidar, optical computing, and other reconfigurable photonic systems. Highly efficient TO tunable microring resonators (MRRs) were first demonstrated based on a sol-gel TiO2 platform in the 1310-nm waveband owing to the synergistic effect between the TiO2 core and SU-8 cladding with both the negative thermo-optical coefficients. The MRR modulator with SU-8 polymer as the top cladding layer exhibits a thermal tuning efficiency of 33.0 pm/mW, which is more than 14 times higher than that with silica top cladding. Its rise/fall times of 9.4 us/24 us and a Pπ power of 7.22 mW were achieved, indicating a relatively high TO modulator figure of merit among noncrystalline material platforms allowing monolithic integration on different substrates. These results yield a strong promise for applying the sol-gel TiO2 platform in photonic integrated circuits and suggest a new angle of view to design compact and efficient TO modulators in wearable devices, visible/infrared communication, and biophotonic applications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Leading Innovative and Entrepreneur Team Introduction Program of Zhejiang

Natural Science Foundation of Zhejiang Province

MOE Frontier Science Center for Brain Science & Brain-Machine Integration, Zhejiang University

Publisher

Optica Publishing Group

Subject

Electronic, Optical and Magnetic Materials

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