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Lightwave Circuits in Lithium Niobate through Hybrid Waveguides with Silicon Photonics

机译:通过硅光子混合波导在铌酸锂中的光波电路

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摘要

We demonstrate a photonic waveguide technology based on a two-material core, in which light is controllably and repeatedly transferred back and forth between sub-micron thickness crystalline layers of Si and LN bonded to one another, where the former is patterned and the latter is not. In this way, the foundry-based wafer-scale fabrication technology for silicon photonics can be leveraged to form lithium-niobate based integrated optical devices. Using two different guided modes and an adiabatic mode transition between them, we demonstrate a set of building blocks such as waveguides, bends, and couplers which can be used to route light underneath an unpatterned slab of LN, as well as outside the LN-bonded region, thus enabling complex and compact lightwave circuits in LN alongside Si photonics with fabrication ease and low cost.
机译:我们演示了一种基于双材料核的光子波导技术,该技术可控地反复在彼此粘合的Si和LN的亚微米厚度结晶层之间来回传输光,其中前者被图案化,后者被图案化。不。这样,可以利用基于铸造的硅光子晶圆级制造技术来形成基于铌酸锂的集成光学器件。使用两种不同的引导模式以及它们之间的绝热模式过渡,我们演示了一组构建模块,例如波导,折弯和耦合器,可用于在无图案的LN平板下方以及LN键合的外部传递光这样,就可以在LN中与Si光子学一起实现复杂而紧凑的光波电路,并且制造容易且成本低廉。

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