Lu Zeqin, Celo Dritan, Mehrvar Hamid, Bernier Eric, Chrostowski Lukas
Department of Electrical and Computer Engineering, University of British Columbia (UBC), Vancouver, Canada.
Central Research Institute, Huawei Technologies Canada Co., Ltd, Ottawa, Canada.
Sci Rep. 2017 Sep 25;7(1):12244. doi: 10.1038/s41598-017-12455-8.
This work proposes a novel silicon photonic tri-state (cross/bar/blocking) switch, featuring high-speed switching, broadband operation, and crosstalk-free performance. The switch is designed based on a 2 × 2 balanced nested Mach-Zehnder interferometer structure with carrier injection phase tuning. As compared to silicon photonic dual-state (cross/bar) switches based on Mach-Zehnder interferometers with carrier injection phase tuning, the proposed switch not only has better performance in cross/bar switching but also provides an extra blocking state. The unique blocking state has a great advantage in applications of N × N switch fabrics, where idle switching elements in the fabrics can be configured to the blocking state for crosstalk suppression. According to our numerical experiments on a fully loaded 8 × 8 dilated Banyan switch fabric, the worst output crosstalk of the 8 × 8 switch can be dramatically suppressed by more than 50 dB, by assigning the blocking state to idle switching elements in the fabric. The results of this work can extend the functionality of silicon photonic switches and significantly improve the performance of on-chip N × N photonic switching technologies.
这项工作提出了一种新型的硅光子三态(交叉/条形/阻塞)开关,具有高速切换、宽带运行和无串扰性能。该开关基于具有载流子注入相位调谐的2×2平衡嵌套马赫-曾德尔干涉仪结构设计。与基于具有载流子注入相位调谐的马赫-曾德尔干涉仪的硅光子双态(交叉/条形)开关相比,所提出的开关不仅在交叉/条形切换方面具有更好的性能,而且还提供了一个额外的阻塞状态。这种独特的阻塞状态在N×N交换矩阵的应用中具有很大优势,其中交换矩阵中的空闲开关元件可以配置为阻塞状态以抑制串扰。根据我们在全负载8×8扩展巴扬交换矩阵上的数值实验,通过将阻塞状态分配给交换矩阵中的空闲开关元件,8×8开关的最坏输出串扰可大幅抑制超过50 dB。这项工作的结果可以扩展硅光子开关的功能,并显著提高片上N×N光子交换技术的性能。