Reshetnyak Victor Yu, Pinkevych Igor P, Bunning Timothy J, Evans Dean R
Physics Faculty, Taras Shevchenko National University of Kyiv, 01601 Kyiv, Ukraine.
Air Force Research Laboratory, Materials and Manufacturing Directorate, Wright-Patterson Air Force Base, OH 45433, USA.
Materials (Basel). 2021 Mar 8;14(5):1282. doi: 10.3390/ma14051282.
This study theoretically investigated light reflection and transmission in a system composed of a thin metal layer (Ag) adjacent to a rugate filter (RF) having a harmonic refractive index profile. Narrow dips in reflectance and peaks in transmittance in the RF band gap were obtained due to the excitation of a Tamm plasmon polariton (TPP) at the Ag-RF interface. It is shown that the spectral position and magnitude of the TPP dips/peaks in the RF band gap depend on the harmonic profile parameters of the RF refractive index, the metal layer thickness, and the external medium refractive index. The obtained dependences for reflectance and transmittance allow selecting parameters of the system which can be optimized for various applications.
本研究从理论上研究了由与具有谐波折射率分布的波纹滤波器(RF)相邻的薄金属层(Ag)组成的系统中的光反射和透射。由于在Ag-RF界面处激发了塔姆表面等离激元极化激元(TPP),在RF带隙中获得了反射率的窄凹陷和透射率的峰值。结果表明,RF带隙中TPP凹陷/峰值的光谱位置和幅度取决于RF折射率的谐波分布参数、金属层厚度和外部介质折射率。所获得的反射率和透射率的相关性允许选择可针对各种应用进行优化的系统参数。