Broadband On-Chip Three Mode (De) Multiplexer Using SWG-Asymmetric Adiabatic Coupling

IF 2.5 3区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Photonics Technology Letters Pub Date : 2025-04-03 DOI:10.1109/LPT.2025.3556783
Rajarshi Guchhait;Shamsul Hassan;Devendra Chack;Gaurav Kumar
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Abstract

A broadband and ultracompact on-chip three-mode (de)multiplexer has been designed and demonstrated experimentally using a subwavelength grating-assisted asymmetric adiabatic coupler on the silicon-on-insulator platform. The device supports the (de)multiplexing of TE0, TE1, and TE2 modes for a broad bandwidth of 145 nm. The proposed device has a compact footprint of $\sim ~5\times 62~\mu $ m2. The fabricated device has a crosstalk of $\lt -10$ dB and insertion loss of <2.6 dB for wavelengths 1530 - 1675 nm (C-L-U band). The proposed three-mode (de)multiplexer is beneficial for mode division multiplexing and can be used for bandwidth enhancement in photonic network-on-chip systems.
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采用swg非对称绝热耦合的宽带片上三模(De)多路复用器
利用亚波长光栅辅助的非对称绝热耦合器,在绝缘体上硅平台上设计了一种宽带超紧凑片上三模(de)多路复用器,并进行了实验验证。设备支持TE0、TE1和TE2模式的(解)复用,带宽可达145nm。所提出的器件占地面积紧凑,为$\sim ~5\times 62~\mu $ m2。该器件在1530 ~ 1675 nm (C-L-U波段)波长范围内的串扰为$\lt -10$ dB,插入损耗<2.6 dB。所提出的三模(解)复用器有利于模分复用,可用于光子片上网络系统的带宽增强。
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来源期刊
IEEE Photonics Technology Letters
IEEE Photonics Technology Letters 工程技术-工程:电子与电气
CiteScore
5.00
自引率
3.80%
发文量
404
审稿时长
2.0 months
期刊介绍: IEEE Photonics Technology Letters addresses all aspects of the IEEE Photonics Society Constitutional Field of Interest with emphasis on photonic/lightwave components and applications, laser physics and systems and laser/electro-optics technology. Examples of subject areas for the above areas of concentration are integrated optic and optoelectronic devices, high-power laser arrays (e.g. diode, CO2), free electron lasers, solid, state lasers, laser materials'' interactions and femtosecond laser techniques. The letters journal publishes engineering, applied physics and physics oriented papers. Emphasis is on rapid publication of timely manuscripts. A goal is to provide a focal point of quality engineering-oriented papers in the electro-optics field not found in other rapid-publication journals.
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