Department of Electrical Engineering, University of Southern California, Los Angeles, California 90007, USA.
Opt Lett. 2011 Apr 1;36(7):1119-21. doi: 10.1364/OL.36.001119.
Hybrid Si-LiNbO₃ electro-optic tunable ring resonators have been proposed and demonstrated as a path to achieving ultracompact and high-speed electro-optic devices. Free standing single crystal LiNbO₃ microplatelets (~mm long and ~1 μm thick) were obtained from a z-cut LiNbO₃ substrate by ion implantation and thermal treatment. The platelets were transferred and thermally bonded on top of Si resonators that were fabricated in a Si-on-insulator platform by a 0.18 μm standard complementary metal-oxide-semiconductor process. For the hybrid microring resonator, a free spectral range of 16.5 nm, a finesse F of ~1.67 × 10², a Q-factor of ~1.68 × 10⁴, and an effective r coefficient of ~1.7 pm/V were achieved for the TE mode. These values are in good agreement with the calculated results.
混合硅-铌酸锂电光可调环谐振器已经被提出并证明是实现超紧凑和高速电光器件的一种途径。通过离子注入和热处理,从 z 切割铌酸锂衬底上获得了自由支撑的单晶铌酸锂微板 (mm 长,1 μm 厚)。微板被转移并热键合在 Si 谐振器上,Si 谐振器是在绝缘体上硅平台上通过 0.18 μm 标准互补金属氧化物半导体工艺制造的。对于混合微环谐振器,TE 模式下的自由光谱范围为 16.5nm,精细度 F 约为 1.67×10²,Q 因子约为 1.68×10⁴,有效 r 系数约为 1.7 pm/V。这些值与计算结果吻合较好。