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Monolithic Silicon Integration of Scaled Photonic Switch Fabrics, CMOS Logic, and Device Driver Circuits

机译:缩放光子交换结构,CMOS逻辑和设备驱动器电路的单片硅集成

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摘要

We demonstrate 4 × 4 and 8 × 8 switch fabrics in multistage topologies based on 2 × 2 Mach-Zehnder interferometer switching elements. These fabrics are integrated onto a single chip with digital CMOS logic, device drivers, thermo-optic phase tuners, and electro-optic phase modulators using IBM's 90 nm silicon integrated nanophotonics technology. We show that the various switch-and-driver systems are capable of delivering nanosecond-scale reconfiguration times, low crosstalk, compact footprints, low power dissipations, and broad spectral bandwidths. Moreover, we validate the dynamic reconfigurability of the switch fabric changing the state of the fabric using time slots with sub-100-ns durations. We further verify the integrity of high-speed data transfers under such dynamic operation. This chip-scale switching system technology may provide a compelling solution to replace some routing functionality currently implemented as bandwidth- and power-limited electronic switch chips in high-performance computing systems.
机译:我们基于2×2 Mach-Zehnder干涉仪开关元件,在多级拓扑中演示了4×4和8×8交换结构。这些结构使用IBM的90纳米硅集成纳米光子技术,通过数字CMOS逻辑,设备驱动器,热光相位调谐器和电光相位调制器集成到单个芯片上。我们证明了各种开关驱动器系统能够提供纳秒级的重新配置时间,低串扰,紧凑的占位面积,低功耗和宽频谱带宽。此外,我们验证了使用低于100 ns持续时间的时隙来改变交换矩阵状态的交换矩阵的动态可重新配置性。我们进一步验证了这种动态操作下高速数据传输的完整性。这种芯片级交换系统技术可以提供一种引人注目的解决方案,以取代目前在高性能计算系统中实现为带宽和功率受限的电子交换芯片的某些路由功能。

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