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单晶铌酸锂薄膜中质子交换相位调制器的电光特性

Electric-optical property of the proton exchanged phase modulator in single-crystal lithium niobate thin film.

作者信息

Cai Lutong, Kang Yun, Hu Hui

出版信息

Opt Express. 2016 Mar 7;24(5):4640-4647. doi: 10.1364/OE.24.004640.

Abstract

The electric-optical property of the proton exchanged phase modulator in an x-cut single-crystal lithium niobate thin film was studied. Proton exchanged waveguides generally suffered from a deteriorated electric-optical coefficient. By introducing a shallow proton exchange layer (thickness = 0.165 μm), most energy of the optical mode was allowed to guide in the untouched single-crystal lithium niobate film, making contribution to the effective electric-optical coefficient as high as 29.5 pm/V, which was very close to that of the bulk lithium niobate (r = 31 pm/V). A 12 V voltage applied to the electrodes located on the two sides of the waveguide induced a 0.097 nm shift of the Fabry-Perot resonant peak. Considering the wavelength difference of the neighboring resonant peaks (0.228 nm) and the length of the electrodes (2.3 mm), the voltage-length product was as low as 6.5 V·cm, indicating the efficient electric-optical modulation.

摘要

研究了x切单晶硅酸锂薄膜中质子交换相位调制器的电光特性。质子交换波导通常存在电光系数恶化的问题。通过引入一个浅质子交换层(厚度 = 0.165μm),大部分光模能量被允许在未受影响的单晶硅酸锂薄膜中传播,使得有效电光系数高达29.5pm/V,这与块状铌酸锂的电光系数(r = 31pm/V)非常接近。施加在波导两侧电极上的12V电压导致法布里 - 珀罗谐振峰发生了0.097nm的偏移。考虑到相邻谐振峰的波长差(0.228nm)和电极长度(2.3mm),电压 - 长度乘积低至6.5V·cm,表明实现了高效的电光调制。

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