Xiao Sanshui, Peng Liang, Mortensen Niels Asger
DTU Fotonik - Department of Photonics Engineering,Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
Opt Express. 2010 Mar 15;18(6):6040-7. doi: 10.1364/OE.18.006040.
Transmission through sub-wavelength apertures in perfect metals is expected to be strongly suppressed. However, by structural engineering of the apertures, we numerically demonstrate that the transmission of transverse electric waves through periodic arrays of subwavelength apertures in a thin metallic film can be significantly enhanced. Based on equivalent circuit theory analysis, periodic arrays of square structured subwavelength apertures are obtained with a 1900-fold transmission enhancement factor when the side length a of the apertures is 10 times smaller than the wavelength (a/lambda =0.1). By examining the induced surface currents and investigating the influence of the lattice constant and the incident angle to the resonant frequency, we show that the enhancement is due to the excitation of the strong localized resonant modes of the structured apertures.
预计通过理想金属中的亚波长孔径的传输会受到强烈抑制。然而,通过对孔径进行结构设计,我们通过数值模拟证明,横向电波通过薄金属膜中亚波长孔径的周期性阵列的传输可以显著增强。基于等效电路理论分析,当孔径边长a比波长小10倍(a/λ = 0.1)时,获得了方形结构亚波长孔径的周期性阵列,其传输增强因子为1900倍。通过研究感应表面电流并考察晶格常数和入射角对共振频率的影响,我们表明这种增强是由于结构化孔径的强局域共振模式的激发。