多路复用器
绝热过程
反向
多路复用
物理
带宽(计算)
拓扑(电路)
计算机科学
电气工程
电信
工程类
数学
几何学
量子力学
作者
Weifeng Jiang,Siqiang Mao,Jinzhu Hu
标识
DOI:10.1109/jlt.2023.3323332
摘要
Silicon-based mode (de)multiplexer [(De)MUX] is a key component in on-chip mode-division multiplexing (MDM) systems. Here, we propose an ultra-compact mode (De)MUX based on the inverse-designed adiabatic coupler with a footprint of only 4 μm × 1.25 μm. By combining the mode-evolution based adiabatic coupler and inverse-designed subunit array, the strength of mode interaction can be greatly enhanced, and an ultra-compact device length can be achieved. Using the direct binary search (DBS) algorithm, two types of mode (De)MUXs are inverse-designed based on circular and square subunit arrays, respectively. Experimental results show that for the circular subunit array based structure, the insertion loss of TE 0 mode within a 140-nm bandwidth is measured to be <2.16 dB, and the 3-dB bandwidth of the TE 1 mode is over 111 nm. For the crosstalk of <−15 dB, the operating bandwidths of TE 0 and TE 1 modes are 112 and 91 nm, respectively. For the square subunit array based structure, the TE 0 and TE 1 modes have insertion losses of less than 5.65 and 2.96 dB, respectively within a 140-nm wavelength range. The bandwidths of two modes are 87 and 134 nm for the crosstalk of <−11 dB.
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