Zortman William A, Lentine Anthony L, Trotter Douglas C, Watts Michael R
Applied Photonic Microsystems, Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.
Opt Express. 2011 Dec 19;19(27):26017-26. doi: 10.1364/OE.19.026017.
For exascale computing applications, viable optical solutions will need to operate using low voltage signaling and with low power consumption. In this work, the first differentially signaled silicon resonator is demonstrated which can provide a 5dB extinction ratio using 3fJ/bit and 500mV signal amplitude at 10Gbps. Modulation with asymmetric voltage amplitudes as low as 150mV with 3dB extinction are demonstrated at 10Gbps as well. Differentially signaled resonators simplify and expand the design space for modulator implementation and require no special drivers.
对于百亿亿次计算应用,可行的光学解决方案需要使用低电压信号传输且功耗低。在这项工作中,展示了首个差分信号硅谐振器,它在10Gbps时使用3fJ/bit和500mV信号幅度可提供5dB的消光比。在10Gbps时也展示了使用低至150mV的不对称电压幅度且消光比为3dB的调制。差分信号谐振器简化并扩展了调制器实现的设计空间,并且不需要特殊驱动器。