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Improved design for SOI based evanescently coupled multilayer spot-size converter

机译:基于SOI的瞬态耦合多层光斑尺寸转换器的改进设计

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We report an improved version of a spot-size converter (SSC) consisting of a silicon nanowire evanescently coupled to a phase-matched Poly-Si multilayer structure. With wider transversal dimensions the multilayer structure expands the mode significantly thus increasing the coupling efficiency with the conventional single-mode fiber. Detailed optimization process of a 17-layer based SSC is discussed and its coupling efficiency with a high-NA fiber of radius 2 μm is obtained as 98% providing only 0.087 dB loss. Vertical alignment tolerance between the optimized SSC and a high-NA fiber of radius 2 μm is also shown. This novel design does not consist of a taper and can be fabricated by using CMOS compatible process. It has a short device length and more relaxed alignment tolerances with the fiber. Full-vectorial and computationally efficient finite element method and the least squares boundary residual method have been used for the analysis and optimization of the proposed structure.
机译:我们报告了一种改进的点尺寸转换器(SSC),该转换器由nano逝耦合到相位匹配的多晶硅多层结构的硅纳米线组成。在更大的横向尺寸下,多层结构显着扩展了模,从而提高了与传统单模光纤的耦合效率。讨论了基于17层的SSC的详细优化过程,其与半径为2μm的高NA光纤的耦合效率为98%,仅提供0.087 dB的损耗。还显示了优化的SSC与半径为2μm的高NA光纤之间的垂直对准公差。这种新颖的设计不包含锥度,可以通过使用CMOS兼容工艺来制造。它的设备长度短,与光纤的对准公差更宽松。全矢量和计算有效的有限元方法和最小二乘边界残差法已用于所提出结构的分析和优化。

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