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Semi-vectorial analysis of a compact wavelength demultiplexer based on the tapered multimode interference coupler

机译:基于锥形多模干涉耦合器的紧凑型波长解复用器的半矢量分析

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摘要

Based on a parabolically tapered multimode interference (MMI) coupler with a deep-etched SiO_2/SiON rib waveguide, a compact wavelength demultiplexer operating at 1.30 and 1.55μm wavelengths is proposed and analysed by using three-dimensional semi-vectorial finite-difference beam propagation method (3D-SV-FD-BPM). The results show that a MMI section of 330.0 μm in length, which is only 76% length of a straight MMI coupler, is achieved with the contrasts of 42.3 and 39.2dB in quasi-TE mode, and 38.4 and 37.8dB in quasi-TM mode at wavelengths 1.30 and 1.55 μm, respectively, and the insertion losses below 0.2dB at both wavelengths and in both polarization states. The alternating direction implicit algorithm with the Crank-Nicholson scheme is applied to the discretization of the 3D-SV-FD-BPM formulation along the longitudinal direction. Moreover, a modified FD scheme is constructed to approximate the resulting equations along the transverse directions, in which the discontinuities of the derivatives of magnetic field components H_y and H_x along the vertical and horizontal interfaces, respectively, are involved.
机译:基于抛物线形锥形多模干涉(MMI)耦合器和深蚀刻的SiO_2 / SiON肋形波导,提出了一种在1.30和1.55μm波长下工作的紧凑型波长解复用器,并通过三维半矢量有限差分光束传播进行了分析。方法(3D-SV-FD-BPM)。结果表明,在准TE模式下,对比度为42.3和39.2dB,在准TM模式下为38.4和37.8dB,对比度为330.0μm,仅为直MMI耦合器长度的76%。分别在波长1.30和1.55μm处处于模态,并且在两个波长和两个偏振态下的插入损耗均低于0.2dB。将具有Crank-Nicholson方案的交替方向隐式算法应用于3D-SV-FD-BPM公式沿纵向的离散化。此外,构造了改进的FD方案以沿横向近似所得方程,其中涉及分别沿垂直和水平界面的磁场分量H_y和H_x的导数的不连续性。

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