Tan Jianzong, Xiao Huifu, Ma Mingyang, Zhou Xudong, Yuan Mingrui, Dubey Aditya, Boes Andreas, Nguyen Thach G, Ren Guanghui, Su Yikai, Mitchell Arnan, Tian Yonghui
Opt Lett. 2022 Jul 15;47(14):3531-3534. doi: 10.1364/OL.463445.
The manipulation of optical modes directly in a multimode waveguide without affecting the transmission of undesired signal carriers is of significance to realize a flexible and simple structured optical network-on-chip. In this Letter, an arbitrary optical mode and wavelength carrier access scheme is proposed based on a series of multimode microring resonators and one multimode bus waveguide with constant width. As a proof-of-concept, a three-mode (de)multiplexing device is designed, fabricated, and experimentally demonstrated. A new, to the best of our knowledge, phase-matching idea is employed to keep the bus waveguide width constant. The mode coupling regions and transmission regions of the microring resonators are designed carefully to selectively couple and transmit different optical modes. The extinction ratio of the microring resonators is larger than 21.0 dB. The mode and wavelength cross-talk for directly (de)multiplexing are less than -12.8 dB and -19.0 dB, respectively. It would be a good candidate for future large-scale multidimensional optical networks.
在不影响不需要的信号载波传输的情况下,直接在多模波导中操纵光学模式对于实现灵活且结构简单的片上光网络具有重要意义。在本信函中,基于一系列多模微环谐振器和一条宽度恒定的多模总线波导,提出了一种任意光学模式和波长载波接入方案。作为概念验证,设计、制作并通过实验演示了一种三模复用/解复用器件。据我们所知,采用了一种新的相位匹配理念来保持总线波导宽度恒定。对微环谐振器的模式耦合区域和传输区域进行了精心设计,以选择性地耦合和传输不同的光学模式。微环谐振器的消光比大于21.0 dB。直接复用/解复用的模式串扰和波长串扰分别小于-12.8 dB和-19.0 dB。它将是未来大规模多维光网络的一个良好候选方案。