Modeling infrared radiative properties of nanoscale metallic complex slit arrays

被引:0
作者
王爱华 [1 ]
牛义红 [1 ]
陈玉彬 [2 ]
机构
[1] School of Materials and Metallurgy, Northeastern University
[2] Department of Mechanical Engineering, National Cheng Kung University
关键词
finite difference time domain method; subwavelength structures; radiative properties; complex slit arrays; cavity resonance;
D O I
暂无
中图分类号
O441 [电磁学];
学科分类号
0809 ;
摘要
The radiative properties(absorptance, reflectance, and transmittance) of deep slits with five nanoscale slit profile variations at the transverse magnetic wave incidence were numerically investigated by employing the finite difference time domain method. For slits with attached features, their radiative properties can be much different due to the modified cavity geometry and dangled structures, even at wavelengths between 3 and 15 μm. The shifts of cavity resonance excitation result in higher transmittance through narrower slits at specific wavelengths and resonance modes are confirmed with the electromagnetic fields. Opposite roles possibly played by features in increasing or decreasing absorptance are determined by the feature position and demonstrated by Poynting vectors. Correlations among all properties of a representative slit array and the slit density are also comprehensively studied. When multiple slit types coexist in an array(complex slits), a wide-band transmittance or absorptance enhancement is feasible by merging spectral peaks contributed from each type of slits distinctively. Discrepancy among infrared properties of four selected slit combinations is explained while effects of slit density are also discussed.
引用
收藏
页码:3927 / 3935
页数:9
相关论文
共 5 条
[1]  
Modeling transmittance through submicron silver slit arrays[J]. 王爱华,蔡九菊,陈玉彬. Journal of Central South University. 2012(08)
[2]  
Modeling of radiative properties of metallic microscale rough surface[J]. 王爱华,蔡九菊. Journal of Central South University. 2012(06)
[3]  
Light transmission through metallic channels much smaller than the wavelength[J] . S Astilean,Ph Lalanne,M Palamaru. Optics Communications . 2000 (4)
[4]  
Diffraction by dual-period gratings .2 Skigin,Diana C,Depine,Ricardo A. Applied Optics . 2007
[5]  
Polarization independent enhanced optical transmission in one-dimensional gratings and device applications .2 Crouse David,Keshavareddy Pavan. Optics express . 2007