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Efficient Dual-Polarized Electro-Optically Tunable Microresonators by Utilization of Ultra-Thin Transparent Electrode

Authors :
Tzyy-Jiann Wang
Min-Yang Chan
Chien-Hsu Chen
An-Ni Sung
I-Chiang Cheng
Source :
Journal of Lightwave Technology. 38:6863-6869
Publication Year :
2020
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2020.

Abstract

High-efficiency electro-optic tuning of microresonators both for TE and TM polarizations is important for versatile advanced photonic applications. This work demonstrates a new device design to realize on-chip lithium niobate microresonators with excellent dual-polarized electro-optic tuning efficiency. The electrode structure is designed such that the produced axial electric field ( Ez ) has an obviously stronger intensity distribution in the guided-wave area of microdisk compared to the radial electric field ( Er ). Thus the large electro-optic coefficient r 13 and r 33 can be effectively utilized for the TE- and TM-polarized electro-optic tuning. The ultra-thin transparent conducting electrode, which is fully covered on the microdisk surface, is utilized with the air-bridge wiring for the production of strong Ez and maintaining a high quality factor of 3.0 × 104. The produced 20μm-diameter lithium niobate microresonators possess the electro-optic tuning efficiency as high as 30.2 pm/V for TE polarization and 24.3 pm/V for TM polarization, which show obvious enhancement compared to the previous works. The highly effective electro-optic tuning of microresonators for dual polarizations offers efficient photonic platforms with the flexible use of any polarization for various photonic applications.

Details

ISSN :
15582213 and 07338724
Volume :
38
Database :
OpenAIRE
Journal :
Journal of Lightwave Technology
Accession number :
edsair.doi...........dd6f477e205e3a3ab2608a0fa025d84a
Full Text :
https://doi.org/10.1109/jlt.2020.3022649