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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A design of triplexer based on a 2 × 2 butterfly MMI coupler and a directional coupler using silicon waveguides
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A design of triplexer based on a 2 × 2 butterfly MMI coupler and a directional coupler using silicon waveguides

机译:基于2×2蝶形MMI耦合器和使用硅波导的定向耦合器的三工器设计

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摘要

A novel ultra-compact triplexer is designed by basing it on a combination of a 2 × 2 generalized interference-multimode interference (GI-MMI) coupler. The MMI is formed into linear butterfly shape and a directional coupler using silicon rib waveguides. Firstly, the 2 × 2 MMI coupler is designed to separate the wavelength 1490 nm into one port and wavelengths of 1310 nm and 1550 nm into another port. Then a directional coupler is used to drop wavelengths of 1310 nm and 1550 nm to output ports individually. Numerical simulations with three-dimensional Beam Propagation Method (BPM) are utilized to design and optimize the operation of the proposed triplexer.
机译:通过基于2×2广义干扰-多模干扰(GI-MMI)耦合器的组合设计出一种新型的超紧凑型三工器。 MMI使用硅肋形波导形成为线性蝶形和定向耦合器。首先,将2×2 MMI耦合器设计为将1490 nm波长分为一个端口,将1310 nm和1550 nm波长分为另一个端口。然后,使用定向耦合器将1310 nm和1550 nm的波长下降到各个输出端口。利用三维束传播方法(BPM)进行数值模拟,以设计和优化所提出的三工器的操作。

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