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Simulation and analysis of electro-optic tunable microring resonators in silicon thin film on lithium niobate

机译:铌酸锂上硅薄膜中电光可调微环谐振器的仿真与分析

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Silicon thin film on lithium niobate combines the advantages of electronic properties of silicon and optical properties of lithium niobate, making it an ideal platform for high-density integrated optics. In this paper, we present an electro-optic tunable microring resonator in silicon thin film on lithium niobate operating at wavelengths of approximately 1.55 μm. The single-mode conditions, optical power distribution, mode profiles, and propagation losses of silicon waveguides are discussed and compared systematically. Quality factor, free spectral range, and bending losses of silicon microring resonators as different radii for different gap sizes between channel and ring waveguides are analyzed in detail. The bending loss and free spectral range decreased with increasing bending radius while the quality factor increased with increasing radius and gap size. The transmission spectrum of microring with radius R?=?10 μm was tuned using the electro-optic effect. The key issues affecting the electro-optic effect, such as silicon film thickness and electric field strength, are discussed. This study is helpful for the understanding of microring structures in silicon thin film on lithium niobate, as well as for the fabrication of high-performance and multifunctional photonic integrated devices.
机译:铌酸锂上的硅薄膜结合了硅的电子性质和铌酸锂的光学性质的优点,使其成为高密度集成光学器件的理想平台。在本文中,我们提出了一种在铌酸锂上的硅薄膜中的电光可调谐微环谐振器,其工作波长约为1.55μm。系统地讨论和比较了硅波导的单模条件,光功率分布,模式分布和传播损耗。详细分析了硅微环谐振器的品质因数,自由光谱范围和弯曲损耗,这些损耗是针对通道和环形波导之间不同间隙大小的不同半径而进行的。弯曲损耗和自由光谱范围随弯曲半径的增加而减小,而品质因数随半径和间隙尺寸的增加而增加。使用电光效应来调谐半径为R 2 =≥10μm的微环的透射光谱。讨论了影响电光效应的关键问题,例如硅膜厚度和电场强度。这项研究有助于理解铌酸锂上的硅薄膜中的微环结构,以及有助于制造高性能和多功能的光子集成器件。

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