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首页> 外文期刊>Journal of Lightwave Technology >A Novel Design of a Wideband Digital Vertical Multimode Interference Coupler
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A Novel Design of a Wideband Digital Vertical Multimode Interference Coupler

机译:宽带数字垂直多模干扰耦合器的新颖设计

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A novel wideband vertical multimode interference coupler (MMIC) is proposed. The proposed coupler replaces the conventional core of MMICs with a multilayer waveguide made of silicon and silicon dioxide. The thickness of the silicon layers of this waveguide is modulated to get a linear relation between the propagation constants of the guided modes and their mode number. This modulation suppresses the wavelength dependence of the coupling length, which maximizes the coupler bandwidth. Since the refractive index profile of the multilayer waveguide of the coupler consists of a group of binary refractive index pulses, it is referred to as a digital vertical (DV)-MMIC. Numerical computations demonstrate the ability to design a DV-MMIC which couples more than 75% of optical power between 470 nm × 220 nm SOI nanowires separated by a vertical height of 3.3 μm over an ultrawide bandwidth of 825 nm.
机译:提出了一种新型的宽带垂直多模干扰耦合器(MMIC)。所提出的耦合器用硅和二氧化硅制成的多层波导代替了传统的MMIC核心。对该波导的硅层的厚度进行调制,以得到导模的传播常数与其模数之间的线性关系。这种调制抑制了耦合长度的波长依赖性,从而最大化了耦合器带宽。由于耦合器的多层波导的折射率分布由一组二进制折射率脉冲组成,因此被称为数字垂直(DV)-MMIC。数值计算证明了设计DV-MMIC的能力,该DV-MMIC在825 nm超宽带宽上的垂直高度为3.3μm的470 nm×220 nm SOI纳米线之间耦合了超过75%的光功率。

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