Guillaumée M, Nikitin A Yu, Klein M J K, Dunbar L A, Spassov V, Eckert R, Martín-Moreno L, García-Vidal F J, Stanley R P
Swiss Centre for Electronics and Microtechnology, CSEM SA, Jaquet-Droz 1, CH-2002 Neuchâtel, Switzerland.
Opt Express. 2010 Apr 26;18(9):9722-7. doi: 10.1364/OE.18.009722.
Enhanced optical transmission (EOT) through a single aperture is usually achieved by exciting surface plasmon polaritons with periodic grooves. Surface plasmon polaritons are only excited by p-polarized incident light, i.e. with the electric field perpendicular to the direction of the grooves. The present study experimentally investigates EOT for s-polarized light. A subwavelength slit surrounded on each side by periodic grooves has been fabricated in a gold film and covered by a thin dielectric layer. The excitation of s-polarized dielectric waveguide modes inside the dielectric film strongly increases the s-polarized transmission. A 25 fold increase is measured as compared to the case without the dielectric film. Transmission measurements are compared with a coupled mode method and show good qualitative agreement. Adding a waveguide can improve light transmission through subwavelength apertures, as both s and p-polarization can be efficiently transmitted.
通过单个孔径实现的增强光学传输(EOT)通常是通过用周期性凹槽激发表面等离激元极化激元来实现的。表面等离激元极化激元仅由p偏振入射光激发,即电场垂直于凹槽方向的光。本研究通过实验研究了s偏振光的EOT。在金膜中制作了一个在每一侧都被周期性凹槽包围的亚波长狭缝,并覆盖了一层薄介电层。介电膜内s偏振介电波导模式的激发极大地提高了s偏振传输。与没有介电膜的情况相比,测量到传输增加了25倍。将传输测量结果与耦合模方法进行比较,显示出良好的定性一致性。添加一个波导可以改善通过亚波长孔径的光传输,因为s偏振和p偏振都可以有效地传输。