By Helen Zhang; David Jin; X J Zhao
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If you’re the type of reader who frequently skips the Preface (I am), you could definitely do this. It’s most likely worthy, although, for me to spend a bit time describing the constitution of this publication to orient you to the way in which the argument unfolds. My goal was once to aim to discover the very best combination of thought and perform.
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Additional info for Advanced research on material science, environmental science and computer science : selected, peer reviewed papers from the 2012 2nd International Conference on Material Science, Environmental Science and Computer Science (MSESCS2012) August 25-26, 2012
Also, the thickness of the nanoparticles influences the interaction between the LSPs and SPPs. Extinction spectra and field distributions evidence an enhancement of the electromagnetic field. By changing the positions of the nanoparticles, the system could be realized controlling the light. Calculations are performed with the three-dimensional full-vector Finite-Difference Time-Domain (FDTD) method. J. Zhao 47 Models and results The system under consideration consists of a metallic nanoparticle chain and a dielectric-metal-dielectric (DMD) substrate as shown in Fig.
M. Litvinov, R. A. Orza, M. Klüppel, M. van Duin, P. C. M. M. Magusin: Macromolecules, Vol. 44 (2011) p. 4887. com Keywords: Metallic Nanoparticle Chain, Localized Surface Plasmons, Surface Plasmon Polaritons Abstract. We demonstrated the coupling of localized surface plasmons and surface plasmon polaritons modes in a system composed of a metallic particle chain separated from a thin metallic film. The results showed that: (1) the thickness of the metallic particles buried in the dielectric space, (2) the positions of the particles influence the level of interaction between localized surface plasmons and surface plasmon polaritons modes.
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