Gómez-Díaz J S, Perruisseau-Carrier J
Adaptive MicroNanoWave Systems, LEMA/Nanolab École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
Opt Express. 2013 Jul 1;21(13):15490-504. doi: 10.1364/OE.21.015490.
The concept, analysis, and design of series switches for graphene-strip plasmonic waveguides at near infrared frequencies are presented. Switching is achieved by using graphene's field effect to selectively enable or forbid propagation on a section of the graphene strip waveguide, thereby allowing good transmission or high isolation, respectively. The electromagnetic modeling of the proposed structure is performed using full-wave simulations and a transmission line model combined with a matrix-transfer approach, which takes into account the characteristics of the plasmons supported by the different graphene-strip waveguide sections of the device. The performance of the switch is evaluated versus different parameters of the structure, including surrounding dielectric media, electrostatic gating and waveguide dimensions.
本文介绍了近红外频率下石墨烯带等离子体波导串联开关的概念、分析和设计。通过利用石墨烯的场效应来选择性地允许或禁止石墨烯带波导某一段上的传播,从而分别实现良好的传输或高隔离度,进而实现开关功能。利用全波模拟以及结合矩阵传输方法的传输线模型对所提出的结构进行电磁建模,该方法考虑了器件不同石墨烯带波导段所支持的等离激元特性。针对结构的不同参数,包括周围电介质、静电门控和波导尺寸,对开关性能进行了评估。