Paper
15 November 2018 Electro-optic mode deflection based on a lithium niobate waveguide with microstructured electrodes
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Proceedings Volume 10964, Tenth International Conference on Information Optics and Photonics; 1096426 (2018) https://doi.org/10.1117/12.2505713
Event: Tenth International Conference on Information Optics and Photonics (CIOP 2018), 2018, Beijing, China
Abstract
We propose the electro-optic mode deflection devices based on annealed proton exchange (APE) waveguides in lithium niobate with microstructured electrodes. Two mode deflection devices with right-triangle-shaped electrodes (Device A) and isosceles-triangle-shaped electrodes (Device B) are investigated. Taking advantage of the refractive index prism array formed when applying an external voltage to the electrodes, the mode can be deflected. Beam smoothing can be achieved by applying alternating voltages. A∼1.28 μm beam deflection is obtained by applying a voltage (20 V) for Device A. For Device B, a 3.52 μm beam deflection is obtained by applying a -15 V voltage to the electrodes. Device B has a horn-shaped input waveguide which ensures that the output is a quasi-single mode. The mode quality of the deflection beam is also quantified by the CMOS camera. Smoothing the non-uniform density distribution of light beam is confirmed by averaging over 69 images taken by the CMOS camera with alternating voltage. These electro-optic mode deflection devices have potential applications in electro-optic sampling, high-speed optical switch, and beam smoothing of a high-power laser.
© (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Fupeng Tian, Huihui Lu, Jun Tao, Jiangli Dong, Wentao Qiu, Heyuan Guan, Yuan Wang, Jianhui Yu, Wenguo Zhu, YunHan Luo, Jun Zhang, Weihua Li, and Zhe Chen "Electro-optic mode deflection based on a lithium niobate waveguide with microstructured electrodes", Proc. SPIE 10964, Tenth International Conference on Information Optics and Photonics, 1096426 (15 November 2018); https://doi.org/10.1117/12.2505713
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KEYWORDS
Waveguides

Electrodes

Electro optics

Modulation

Lithium niobate

CMOS cameras

High power lasers

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