Truong Cao Dung, Nguyen Thi Hang Duy, Chandrahalim Hengky, Trinh Minh Tuan
Faculty of Electronics and Computer Engineering, Posts and Telecommunications Institute of Technology, Hanoi, Vietnam.
Department of Electrical and Computer Engineering, The US Air Force Institute of Technology, 2950 Hobson Way, Wright-Patterson Air Force Base, Dayton, OH, 45433-7765, USA.
Sci Rep. 2021 Jan 13;11(1):897. doi: 10.1038/s41598-020-80174-8.
Multimode optical switch is a key component of mode division multiplexing in modern high-speed optical signal processing. In this paper, we introduce for the first time a novel 2 × 2 multimode switch design and demonstrate in the proof-of-concept. The device composes of four Y-multijunctions and 2 × 2 multimode interference coupler using silicon-on-insulator material with four controllable phase shifters. The shifters operate using thermo-optic effects utilizing Ti heaters enabling simultaneous switching of the optical signal between the output ports on four quasi-transverse electric modes with the electric power consumption is in order of 22.5 mW and the switching time is 5.4 µs. The multimode switch exhibits a low insertion loss and a low crosstalk below - 3 dB and - 19 dB, respectively, in 50 nm bandwidth in the third telecom window from 1525 to 1575 nm. With a compact footprint of 10 µm × 960 µm, this device exhibits a relatively large width tolerance of ± 20 nm and a height tolerance of ± 10 nm. Furthermore, the conceptual principle of the proposed multimode switch can be reconfigurable and scalable in multifunctional on-chip mode-division multiplexing optical interconnects.
多模光开关是现代高速光信号处理中模分复用的关键组件。在本文中,我们首次介绍了一种新颖的2×2多模开关设计,并进行了概念验证演示。该器件由四个Y型多结和一个2×2多模干涉耦合器组成,采用绝缘体上硅材料,并带有四个可控移相器。这些移相器利用热光效应工作,使用钛加热器,能够在四个准横向电模式的输出端口之间同时切换光信号,功耗约为22.5 mW,开关时间为5.4 μs。在1525至1575 nm的第三通信窗口的50 nm带宽内,该多模开关的插入损耗低,串扰分别低于-3 dB和-19 dB。该器件占地面积紧凑,为10 µm×960 µm,具有相对较大的宽度容差±20 nm和高度容差±10 nm。此外,所提出的多模开关的概念原理在多功能片上模分复用光互连中可重新配置且可扩展。