论文标题
宽带非挥发性电气可编程的硅光子开关
Broadband nonvolatile electrically programmable silicon photonic switches
论文作者
论文摘要
可编程光子综合电路(PIC)最近引起了极大的兴趣,因为它们有潜力创建从人工神经网络和微波光子学到量子信息处理的下一代技术。此类可编程图片的基本构建块是可调的2 x 2开关,传统上由热式或自由运营商分散剂控制。然而,这些实现是渴望的,挥发性的,并且具有较大的占地面积(通常> 100 um)。因此,对于大规模图片,非常需要一个真正的“设置和验证” 2 x 2开关。在这里,我们报告了基于相变材料GE2SB2TE5的宽带非挥发性可编程的2 x 2硅光子开关。方向耦合器开关在整个电信C波段中表现出紧凑的耦合长度(64 um),小插入损失(<2 dB)和最小的串扰(<-8 dB),同时保持了创纪录的耐力超过2,800个开关循环。该开关构成了实现未来通用可编程硅光子系统的关键组成部分。
Programmable photonic integrated circuits (PICs) have recently gained significant interest due to their potential in creating next-generation technologies ranging from artificial neural networks and microwave photonics to quantum information processing. The fundamental building block of such programmable PICs is a tunable 2 x 2 switch, traditionally controlled by the thermo-optic or free-carrier dispersion. Yet, these implementations are power-hungry, volatile, and have a large footprint (typically > 100 um). Therefore, a truly 'set-and-forget' type 2 x 2 switch with zero static power consumption is highly desirable for large-scale PICs. Here, we report a broadband nonvolatile electrically programmable 2 x 2 silicon photonic switch based on the phase-change material Ge2Sb2Te5. The directional coupler switch exhibits a compact coupling length (64 um), small insertion loss (<2 dB), and minimal crosstalk (<-8 dB) across the entire telecommunication C-band while maintaining a record-high endurance of over 2,800 switching cycles. This demonstrated switch constitutes a critical component for realizing future generic programmable silicon photonic systems.