Dintinger José, Martin Olivier J F
Nanophotonics and Metrology Laboratory, Swiss Federal Institute of Technology Lausanne (EPFL), EPFL-STI-NAM, ELG Station 11, CH-1015 Lausanne, Switzerland.
Opt Express. 2009 Feb 16;17(4):2364-74. doi: 10.1364/oe.17.002364.
We investigate numerically the effect of a finite metal film thickness on the propagation characteristics of the channel Plasmon polariton (CPP) and wedge plasmon polariton (WPP) modes, both in a symmetric and asymmetric environment. We observe that decreasing the metal thickness results in an improvement of the field localization near the groove tip and an increase of the losses for both types of mode. This behavior stems from the typical symmetric charge distribution of both modes across the metal film. When considering an asymmetric dielectric environment, the CPP mode is found to evolve into short range Plasmon modes propagating along the groove walls, in contrast to the WPP mode which remains essentially confined at the tip apex. These results can be useful to tailor the properties of such plasmon modes, using the metal thickness as the variable parameter.
我们通过数值研究了有限金属膜厚度对对称和非对称环境下沟道表面等离激元极化激元(CPP)和楔形表面等离激元极化激元(WPP)模式传播特性的影响。我们观察到,减小金属厚度会导致两种模式在凹槽尖端附近的场局域化得到改善,同时损耗增加。这种行为源于两种模式在金属膜上典型的对称电荷分布。当考虑非对称介电环境时,发现CPP模式会演化为沿凹槽壁传播的短程表面等离激元模式,而WPP模式基本上仍局限于尖端顶点。这些结果对于利用金属厚度作为可变参数来调整此类表面等离激元模式的特性可能是有用的。