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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Accurate and efficient simulation for silicon-nanowire-based multimode interference couplers with a 3D finite-element mode-propagation analysis
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Accurate and efficient simulation for silicon-nanowire-based multimode interference couplers with a 3D finite-element mode-propagation analysis

机译:基于3D有限元模式传播分析的基于硅纳米线的多模干涉耦合器的准确高效仿真

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摘要

A three-dimensional (3D) finite-element mode-propagation analysis is presented to give an accurate and efficient simulation for silicon-nanowire- based multimode interference (MMI) couplers. For the presented numerical method, a finite-element method mode solver is used to calculate the mode profiles and the propagation constants in a multimode section. The comparison between the presented method and some other numerical methods [e.g., finite-difference time-domain (FDTD) method, beam propagation methods, etc.] is also shown. It is shown that the presented numerical method gives simulation results very close to those from the 3D FDTD (with a deviation less than 1%). Therefore, it is very convenient for the design of Si-nanowire-based MMI couplers.
机译:提出了三维(3D)有限元模式传播分析,可为基于硅纳米线的多模干扰(MMI)耦合器提供准确而有效的仿真。对于所提出的数值方法,使用有限元方法模式求解器来计算多模式截面中的模式轮廓和传播常数。还示出了所提出的方法与一些其他数值方法之间的比较[例如,有限差分时域(FDTD)方法,束传播方法等]。结果表明,所提出的数值方法给出的仿真结果与3D FDTD的仿真结果非常接近(偏差小于1%)。因此,这对于基于Si-纳米线的MMI耦合器的设计非常方便。

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