Babicheva Viktoriia E, Shalaginov Mikhail Y, Ishii Satoshi, Boltasseva Alexandra, Kildishev Alexander V
Opt Express. 2015 Nov 30;23(24):31109-19. doi: 10.1364/OE.23.031109.
We study plasmonic waveguides with dielectric cores and hyperbolic multilayer claddings. The proposed design provides better performance in terms of propagation length and mode confinement in comparison to conventional designs, such as metal-insulator-metal and insulator-metal-insulator plasmonic waveguides. We show that the proposed structures support long-range surface plasmon modes, which exist when the permittivity of the core matches the transverse effective permittivity component of the metamaterial cladding. In this regime, the surface plasmon polaritons of each cladding layer are strongly coupled, and the propagation length can be on the order of a millimeter.
我们研究具有电介质芯和双曲线多层包层的等离子体波导。与传统设计(如金属-绝缘体-金属和绝缘体-金属-绝缘体等离子体波导)相比,所提出的设计在传播长度和模式限制方面具有更好的性能。我们表明,所提出的结构支持长程表面等离子体模式,当芯的介电常数与超材料包层的横向有效介电常数分量匹配时,该模式存在。在这种情况下,每个包层的表面等离子体激元强烈耦合,传播长度可达毫米量级。