Tavana Shahab, Bahadori-Haghighi Shahram, Sheikhi Mohammad Hossein
Opt Express. 2022 Mar 14;30(6):9269-9283. doi: 10.1364/OE.448607.
A novel electro-optical switch is proposed and investigated using the transfer matrix method (TMM) and three-dimensional finite-difference time-domain (3D FDTD) analysis at the near-infrared range. The structure is made of a defect at the middle of a one-dimensional photonic crystal. The defect consists of two anisotropic graphene (AG) sheets separated by a dielectric layer. As a result, a sharp transmission peak with a high quality factor of 5000 appears at the wavelength of 1552.4 nm where light is trapped by the defect. When an external voltage is applied across the AG sheets, their chemical potentials shift in such a way that the trapped photons are absorbed and the switch changes to ON state. According to the presented results, a high extinction ratio of 14.26 dB with a very low insertion loss of 0.18 dB are obtained. The required switching voltage and energy consumption are as low as 4.68 V and 226 fJ/bit, respectively. The 3 dB bandwidth is also calculated to be as high as 17.5 GHz, which makes our proposed switch promising for high speed optical systems.
提出了一种新型电光开关,并利用传输矩阵法(TMM)和三维时域有限差分法(3D FDTD)在近红外波段进行了研究。该结构由一维光子晶体中间的一个缺陷构成。该缺陷由两层被电介质层隔开的各向异性石墨烯(AG)片组成。结果,在1552.4 nm波长处出现了一个品质因数高达5000的尖锐透射峰,此时光被该缺陷捕获。当在AG片上施加外部电压时,它们的化学势发生变化,使得捕获的光子被吸收,开关变为导通状态。根据给出的结果,获得了高达14.26 dB的消光比和低至0.18 dB的插入损耗。所需的开关电压和能耗分别低至4.68 V和226 fJ/bit。计算得出3 dB带宽高达17.5 GHz,这使得我们提出的开关在高速光学系统中具有应用前景。