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An 8-Channel Wavelength MMI Demultiplexer in Slot Waveguide Structures

机译:缝隙波导结构中的8通道波长MMI多路分解器

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摘要

We propose a novel 8-channel wavelength multimode interference (MMI) demultiplexer in slot waveguide structures that operate at 1530 nm, 1535 nm, 1540 nm, 1545 nm, 1550 nm, 1555 nm, 1560 nm, and 1565 nm. Gallium nitride (GaN) surrounded by silicon (Si) was found to be a suitable material for the slot-waveguide structures. The proposed device was designed by seven 1 × 2 MMI couplers, fourteen S-bands, and one input taper. Numerical investigations were carried out on the geometrical parameters using a full vectorial-beam propagation method (FV-BPM). Simulation results show that the proposed device can transmit 8-channel that works in the whole C-band (1530–1565 nm) with low crosstalk (−19.97–−13.77 dB) and bandwidth (1.8–3.6 nm). Thus, the device can be very useful in optical networking systems that work on dense wavelength division multiplexing (DWDM) technology.
机译:我们在缝隙波导结构中提出了一种新颖的8通道波长多模干涉(MMI)多路分解器,其工作频率为1530 nm,1535 nm,1540 nm,1545 nm,1550 nm,1555 nm,1560 nm和1565 nm。发现被硅(Si)包围的氮化镓(GaN)是用于缝隙波导结构的合适材料。拟议的器件由七个1×2 MMI耦合器,十四个S波段和一个输入锥度设计。使用完全矢量束传播方法(FV-BPM)对几何参数进行了数值研究。仿真结果表明,所提出的设备可以传输在整个C波段(1530–1565 nm)工作的8通道,串扰(−19.97–−13.77 dB)和带宽(1.8–3.6 nm)低。因此,该设备在采用密集波分复用(DWDM)技术的光网络系统中非常有用。

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