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天线共振子理论对吡啶分子在铁钴镍衬底上SERS增强因子的计算
引用本文:李佳伟,白莹,莫育俊,Wachter P. 天线共振子理论对吡啶分子在铁钴镍衬底上SERS增强因子的计算[J]. 光谱学与光谱分析, 2006, 26(3): 463-466
作者姓名:李佳伟  白莹  莫育俊  Wachter P
作者单位:1. 河南大学光学与光电子技术研究所,河南,开封,475001;陕西师范大学物理学与信息技术学院,陕西,西安,710062
2. 河南大学光学与光电子技术研究所,河南,开封,475001
3. Laboratorium Für Festk(o)rperphysik, ETH Zürich, 8093 Zürich, Switzerland
摘    要:天线共振子模型是在研究表面增强拉曼散射增强机理过程中提出的理论.作为一项非常具有代表意义的工作,文章利用天线共振子模型计算了吡啶分子1010 cm-1特征振动模在过渡金属Fe,Co,Ni衬底上的表面增强拉曼散射增强因子:给出了共振时三种金属增强因子与激发光能量的依赖关系;研究了它们的表面粗糙度对增强因子的影响,计算了能量为0.89 eV的入射光在不同表面粗糙度的三种金属衬底上的增强因子.计算结果表明,它们在可见光范围增强因子不大,这与已报道的实验结果一致;但在红外波长却有大的增强因子,可以达到104~107,有待实验检验.

关 键 词:表面增强拉曼散射  增强因子  天线共振子  过渡金属
文章编号:1000-0593(2006)03-0463-04
收稿时间:2005-01-12
修稿时间:2005-04-20

Calculation of the SERS Enhancement Factors of Pyridine Molecules Adsorbed on the Substrates of Fe, Co and Ni Using Antenna Resonace Model
LI Jia-wei,BAI Ying,MO Yu-jun,Wachter P. Calculation of the SERS Enhancement Factors of Pyridine Molecules Adsorbed on the Substrates of Fe, Co and Ni Using Antenna Resonace Model[J]. Spectroscopy and Spectral Analysis, 2006, 26(3): 463-466
Authors:LI Jia-wei  BAI Ying  MO Yu-jun  Wachter P
Affiliation:Institute of Optics and Photoelectronic Technology, Henan University, Henan Kaifeng 475001, China.
Abstract:The theory of antenna resonance model is a theory advanced in the investigation of the mechanism of surface enhanced Raman scattering. In the present paper, as a representational example the authors have calculated the enhancement factors of the vibrational mode 1 010 cm -1 of pyridine molecules adsorbed on the metal substrates of Fe, Co and Ni through this model. The dependence of the enhancement factor of Raman scattering on different incident energy at resonance was studied and that on surface roughness of the three metals with the excitation of 0.89 eV was brought forward. As a result, the enhancement factors in visible region are small, but they are rather large (104-107) in infrared region.
Keywords:Surface enhanced Raman scattering   Enhancement factor   Antenna resonator   Transition metal
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