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OALib Journal期刊
ISSN: 2333-9721
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Full-vectorial analysis of the directional couplers in vertical multiple-slotted silicon wires with trapezoidal cross-section
梯形截面硅基垂直多槽纳米线定向耦合器全矢量分析

Keywords: directional coupler,multiple-slotted silicon wires,slanted sidewalls,finite element method,silicon photonics
定向耦合器
,多槽纳米线,侧壁倾斜,有限元法,硅光子学

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Abstract:

A directional coupler composed of two vertical multiple-slotted silicon wires with trapezoidal cross-section is characterized using a full-vectorial finite element method in terms of the electric fields, where the perfectly matched layer absorbing boundary conditions are adopted. The effects of the structural or material parameters including the sidewall angle, the gap between the coupled waveguides, and the width and index profiles in the slot regions on the behaviors of the directional coupler are taken into account. The effective indexes of the even and odd modes and the corresponding coupling length, both in quasi-TE and quasi-TM modes, are presented. The strongly-hybrid nature of the guided-modes is effectively demonstrated. The results show that polarization-independent directional couplers can be realized by properly choosing the structural and material parameters.

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