Jafari Mohsen, Rais-Zadeh Mina
Opt Lett. 2016 Mar 15;41(6):1177-80. doi: 10.1364/OL.41.001177.
This Letter presents an innovative design of an electro-optical modulator using germanium telluride (GeTe) phase change material with an integrated nano-heater. The refractive index and the electrical conductivity of GeTe significantly change as the GeTe goes though the crystallographic phase change. Amorphization and crystallization of GeTe is achieved using the Joule heating method by passing current through an array of metal gratings, where GeTe fills the slits between the metal lines. These metal slits also increase the contrast between the amorphous (on) and crystalline (off) phases of the modulator by having extraordinary transmission and reflection response based on interactions of surface plasmon polaritons (SPPs) with the incoming light. The modulator is designed for 1550 nm wavelength, where GeTe is transparent in the amorphous phase and provides high optical on/off contrast. The metal-insulator-metal (MIM) is designed in such a way to only support SPP excitation when GeTe is crystalline and slit resonance when it is amorphous to increase the modulation index. The modulator is stable in both phases with higher than 12 dB change in transmission with zero static power consumption at room temperature.
本信函展示了一种采用碲化锗(GeTe)相变材料与集成纳米加热器的电光调制器的创新设计。当GeTe经历晶体相变时,其折射率和电导率会发生显著变化。通过使电流通过金属光栅阵列,利用焦耳加热法实现GeTe的非晶化和结晶,其中GeTe填充金属线之间的缝隙。这些金属缝隙还基于表面等离激元极化子(SPP)与入射光的相互作用,具有非凡的透射和反射响应,从而增加了调制器非晶态(开)和晶态(关)之间的对比度。该调制器针对1550 nm波长进行设计,在该波长下,GeTe在非晶态下是透明的,并提供高光学开/关对比度。金属 - 绝缘体 - 金属(MIM)结构的设计方式是,仅在GeTe为晶态时支持SPP激发,在非晶态时支持缝隙共振,以提高调制指数。该调制器在两个相位下都很稳定,在室温下具有高于12 dB的透射变化,且静态功耗为零。