Hosseini Amir, Xu Xiaochuan, Subbaraman Harish, Lin Che-Yun, Rahimi Somayeh, Chen Ray T
Omega Optics, Inc, 10306 Sausalito Dr, Austin, TX 78759, USA.
Opt Express. 2012 May 21;20(11):12318-25. doi: 10.1364/OE.20.012318.
We present a dispersion engineered slow light silicon-based photonic crystal waveguide PIN modulator. Low-dispersion slow light transmission over 18 nm bandwidth under the silica light line with a group index of 26.5 is experimentally confirmed. We investigate the variations of the modulator figure of merit, V(π) × L, as a function of the optical carrier wavelength over the bandwidth of the fundamental photonic crystal waveguide defect mode. A large signal operation with a record low maximum V(π )× L of 0.0464 V · mm over the low-dispersion optical spectral range is demonstrated. We also report the device operation at 2 GHz.
我们展示了一种基于色散工程的慢光硅基光子晶体波导PIN调制器。实验证实,在二氧化硅光线下,群折射率为26.5时,在18 nm带宽上实现了低色散慢光传输。我们研究了调制器品质因数V(π)×L在基本光子晶体波导缺陷模式带宽内随光载波波长的变化。在低色散光谱范围内,展示了大信号操作,其最大V(π)×L创纪录地低,为0.0464 V·mm。我们还报告了该器件在2 GHz下的运行情况。