The Interference Pattern of Plasmonic and Photonic Modes Manipulated by Slit Width

Nanomaterials (Basel). 2020 Apr 11;10(4):730. doi: 10.3390/nano10040730.

Abstract

We demonstrate that the interference pattern of the plasmonic and photonic modes can be controlled by changing the slit width of a square slit structure. Based on the analyses of the plasmonic and photonic modes of slits with different widths, we theoretically derived the expressions of wavefield generated by a square slit. A far-field scattered imaging system is utilized to collect the intensity distribution experimentally. Various interference patterns, including stripes, square-like lattice array, and diamond-like lattice array, have been observed by adjusting the slit widths. In addition, the results were validated by performing finite-difference time-domain simulations, which are consistent with the theoretical and experimental results.

Keywords: interference pattern; polarization; slit width; surface plasmon.