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论文作者:www.51lunwen.org论文属性:调研报告 Research Proposal登出时间:2013-07-04编辑:tinkle点击率:3102
论文字数:1695论文编号:org201307040948375048语种:英语 English地区:香港价格:$ 22
关键词:SPP PropagationSurface Plasmon Polariton香港科学技术论文
摘要:香港科学技术论文:Investigation of SPP Propagation on Silver Films Applying Rayleigh Scattering,参考文献需要15个左右,论文类型是research proposal格式,研究方法需要创新,并能够体现科研水平。
论文题目:香港科学技术论文:Investigation of SPP Propagation on Silver Films Applying Rayleigh Scattering
论文语种:英文
您的研究方向:光学
是否有数据处理要求:否
您的国家:香港
您的学校背景:国内一流重点大学
要求字数:1500~2000
论文用途:其它
是否需要盲审(博士或硕士生有这个需要):否
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香港科学技术论文:Investigation of SPP Propagation on Silver Films Applying Rayleigh Scattering
Abstract
This report aims to design an experiment which will apply the Rayleigh scattering method to observe the propagation performance of Surface Plasmon Polariton (SPP) along the surface of the silver thin films. This experiment will investigate the interference pattern which should https://www.51lunwen.org/scienceandtech/ be around the edge of the thin film, detect the SPP’s wave number along the silver film from the width of interference and achieve the SPP’s dispersion relation through changing the incidence light’s wave length. The dispersion relation obtained experimentally is expected to be accord with the results which are calculated with the silver parameters.
本报告的目的是设计一个实验,将适用于瑞利散射法观察表面等离子体激元的传播性能(SPP)在银薄膜的表面。本实验将研究干扰模式,应该在薄膜的边缘,检测属的波数在银膜从干扰的宽度和通过改变入射光的波长实现SPP的色散关系。得到的色散关系的实验有望与银参数计算的结果相符。
Contents
Abstract 1
1. Specific Aims 1
2. Background & Significance 2
3. Research Methods & Experiment Design 3
3.1 Research Methods 4
3.2 Experiment Design 4
3.2.1 Subjects 4
3.2.2 Instruments 4
3.2.3 Procedure 5
4. Expected Results 5
Conclusion 5
References 6
1. Specific Aims
This report aims to design an experiment which will apply the Rayleigh scattering method to observe the propagation performance of SPP along the surface of the silver thin films. And this report will achieve this goal through the following three aims.
References
Agranovich V.M., D. L. Mills (Eds.), (1982). Surface Polaritons, North-Holland, Amsterdam.
AnatolyV. Zayats, IgorI. Smolyaninov, AlexeiA. Maradudin, (2005). Nano-optics of surface Plasmon polaritons. Elsevier. Physical Report, (408).
Ebbesen et al., (1998) Extraordinary optical transmission through sub-wavelength hole arrays, Nature, (391).
Greg Gbur (2007). Surface Plasmon Effects in Nano- Optics. Department of Physics and Optical Science. p.25.
Jan Seidel (2005). Propagation, Scattering and Amplification of Surface Plasmons.
Institut fur Angewandte Physik, TU Dresden.
Kawata S. (Ed.), (2001). Near- Field Optics and Surface Plasmon Polaritons, Springer, Berlin.
Kawata S., M. Ohtsu, M. Irie (Eds.) (2002). Nano-Optics, Springer, Berlin.
Knoll B., Keilmann F., (1999). Near-field probing of vibrational absorption for chemical microscopy. Nature, (399).
Maier S.A., (2007). Plasmonics, Springer, Berlin.
Novotry L., B. Hecht, (2006). Principles of https://www.51lunwen.org/scienceandtech/ Nano-optics, Cambridge University Press,
New York.
Ogawa Y., S.Takahashi, D. Nakajima, F. Minami (2011). Imaging of surface Plasmon polariton propagation on a Au thin film by using tip-enhanced Rayleigh scattering. Journal of Luminescence. Tokyo.
Raether H., (1988). Surface Plasmons, Springer-Verlag, Berlin.
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