Yang Xing, Nisar Muhammad Shemyal, Yuan Wei, Zheng Fengang, Lu Liangjun, Chen Jianping, Zhou Linjie
Opt Lett. 2021 Sep 1;46(17):4224-4227. doi: 10.1364/OL.435552.
Recently, large-scale photonic integrated circuits have seen rapid development. Optical switches are the elementary units used to realize optical routers and processors. However, the high static power and large footprint of silicon electro-optic and thermo-optic switches are becoming an obstacle for further scaling and high-density integration. In this Letter, we demonstrate a 2×2 nonvolatile silicon Mach-Zehnder optical switch enabled by low-loss phase change material . Changing the phase state of can switch the optical transmission between the bar and cross paths. As no static power is required to maintain the phase state, it can find promising applications in optical switch matrices and reconfigurable optical circuits.
近年来,大规模光子集成电路发展迅速。光开关是用于实现光路由器和处理器的基本单元。然而,硅电光和热光开关的高静态功耗和大尺寸正成为进一步缩小尺寸和高密度集成的障碍。在本信函中,我们展示了一种由低损耗相变材料实现的2×2非易失性硅马赫-曾德尔光开关。改变[材料名称]的相态可在条形和交叉路径之间切换光传输。由于维持相态无需静态功耗,它在光开关矩阵和可重构光电路中有着广阔的应用前景。