Sato Hiromu, Miura Hiroki, Qiu Feng, Spring Andrew M, Kashino Tsubasa, Kikuchi Takamasa, Ozawa Masaaki, Nawata Hideyuki, Odoi Keisuke, Yokoyama Shiyoshi
Opt Express. 2017 Jan 23;25(2):768-775. doi: 10.1364/OE.25.000768.
An electro-optic (EO) polymer waveguide using an ultra-thin silicon hybrid has been designed and fabricated. The silicon core has the thickness of 50 nm and a width of 5 μm. The waveguide was completed after covering the cladding with the high temperature stable EO polymer. We have demonstrated a low half-wavelength voltage of 0.9 V at the wavelength of 1.55 μm by using a Mach-Zehnder interference modulator with TM mode operation. The measured modulation corresponded to an effective in-device EO coefficient of 165 pm/V. By utilizing the traveling-wave electrode on the modulator the high-frequency response was tested up to 40 GHz. The 3 dB modulation bandwidth was measured to be 23 GHz. In addition, the high frequency sideband spectral measurement revealed that a linear response of the modulation index against the RF power was confirmed up to 40 GHz signal.
一种采用超薄硅混合材料的电光(EO)聚合物波导已被设计并制造出来。硅芯厚度为50纳米,宽度为5微米。在用高温稳定的电光聚合物覆盖包层后,波导制作完成。通过使用工作在TM模式的马赫-曾德尔干涉调制器,我们在1.55微米波长处展示了0.9伏的低半波长电压。测量得到的调制对应于器件内165皮米/伏的有效电光系数。通过在调制器上使用行波电极,对高达40吉赫兹的高频响应进行了测试。测得的3分贝调制带宽为23吉赫兹。此外,高频边带光谱测量表明,在高达40吉赫兹信号下,调制指数对射频功率的线性响应得到了证实。