Wang Feng, Xiao Min, Sun Kai, Wei Qi-Huo
Liquid Crystal Institute, Kent State University, Kent, OH 44242, USA.
Opt Express. 2010 Jan 4;18(1):63-71. doi: 10.1364/OE.18.000063.
Optical transmission through concentric circular nanoslits is studied in experiments and numerical simulations. Polarized optical microscopic imaging shows that the optical transmission through these apertures is spatially inhomogeneous, exhibiting colored fan texture patterns. Numerical simulations show that these colored fan texture patterns originate from the cylindrical vector polarization of the transmitted beam. Specifically, the transmitted light is in-phase radially polarized at long wavelengths due to the predominant transmission of the transverse magnetic (TM) waveguide modes; and in-phase azimuthally polarized at short wavelengths due to the increased optical transmission of the transverse electric (TE) waveguide modes. Additionally, the transmission shows a peak at the wavelength of Wood anomaly and a dip at the resonant wavelength of surface plasmon excitation; and the transmitted light at these wavelengths is a mixture of azimuthally and radially polarized fields. These interesting optical transmission behaviors of circular nanoslits provide a miniaturized way to generating radially and azimuthally polarized light.
通过实验和数值模拟研究了光通过同心圆形纳米狭缝的传输。偏振光学显微镜成像表明,通过这些孔径的光传输在空间上是不均匀的,呈现出彩色扇形纹理图案。数值模拟表明,这些彩色扇形纹理图案源于透射光束的圆柱矢量偏振。具体而言,由于横向磁(TM)波导模式的主要传输,在长波长下透射光呈径向同相偏振;而在短波长下,由于横向电(TE)波导模式的光传输增加,透射光呈方位角同相偏振。此外,传输在伍德异常波长处出现峰值,在表面等离子体激元激发的共振波长处出现谷值;并且在这些波长处的透射光是方位角偏振场和径向偏振场的混合。圆形纳米狭缝的这些有趣的光传输行为提供了一种产生径向和方位角偏振光的小型化方法。