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Discrete Dipole Approximation Aided Design Method for Nanostructure Arrays
作者姓名:朱少丽  罗先刚  杜春雷
作者单位:State Key Laboratory of Optical Technologies for Microfabrication, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209
基金项目:Supported by the National Basic Research Programme of China under Grant No 2006CB302900, and National Natural Science Foundation of China under Grant Nos 60507014 and 60678035.
摘    要:A discrete dipole approximation (DDA) aided design method is proposed to determine the parameters of nanostructure arrays. The relationship between the thickness, period and extinction efficiency of nanostructure arrays for the given shape can be calculated using the DDA. Based on the calculated curves, the main parameters of the nanostructure arrays such as thickness and period can be determined. Using this aided method, a rhombic sliver nanostructure array is designed with the determinant parameters of thickness (40 nm) and period (440 nm). We further fabricate the rhombic sliver nanostructure arrays and testify the character of the extinction spectra. The obtained extinction spectra is within the visible range and the full width at half maximum is 99nm, as is expected.

关 键 词:离散偶极子  纳米结构数组  电子光学  散射
收稿时间:2007-6-15
修稿时间:2007-06-15

Discrete Dipole Approximation Aided Design Method for Nanostructure Arrays
ZHU Shao-Li,LUO Xian-Gang,DU Chun-Lei.Discrete Dipole Approximation Aided Design Method for Nanostructure Arrays[J].Chinese Physics Letters,2007,24(10):2902-2905.
Authors:ZHU Shao-Li  LUO Xian-Gang  DU Chun-Lei
Institution:State Key Laboratory of Optical Technologies for Microfabrication, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209
Abstract:A discrete dipole approximation (DDA) aided design method is proposed to determine the parameters of nanostructure arrays. The relationship between the thickness, period and extinction efficiency of nanostructure arrays for the given shape can be calculated using the DDA. Based on the calculated curves, the main parameters of the nanostructure arrays such as thickness and period can be determined. Using this aided method, a rhombic sliver nanostructure array is designed with the determinant parameters of thickness (40nm) and period (440nm). We further fabricate the rhombic sliver nanostructure arrays and testify the character of the extinction spectra. The obtained extinction spectra is within the visible range and the full width athalf maximum is 99nm, as is expected.
Keywords:52  25  Tx
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