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Angle-Resolved Plasmonic Properties of Single Gold Nanorod Dimers
  • ISSN号:2311-6706
  • 期刊名称:NANO-MICRO LETTERS
  • 时间:2014.10
  • 页码:372-380
  • 分类:TB383.1[一般工业技术—材料科学与工程]
  • 作者机构:Department of Physics and Astronomy, Key Laboratory for Laser Plasmas (Ministry of Education), State Key Lab of Advanced Optical Communication Systems and Networks,Shanghai Jiao Tong University, Division of i-Lab, Key Laboratory for Nano-Bio Interface Research & Collaborative Innovation Center of Suzhou Nano Science and Technology, Suzhou Institute of Nano-Tech & Nano-Bionics, Chinese Academy of Sciences
  • 相关基金:supported by the National Natural Science Foundation of China (NSFC) (grant no. 61178014, 11274231, and 21271181);the key project of the Ministry of Education of China under grant 109061;Ministry of Science and Technology of China (Inter-governmental S&T Cooperation Project, grant no. 6–10);Thousand Youth Talents Program of China
  • 相关项目:基于光纤布里渊激光振荡器的超光速传输及其应用探索
中文摘要:

Through wet-chemical assembly methods, gold nanorods were placed close to each other and formed a dimer with a gap distance *1 nm, and hence degenerated plasmonic dipole modes of individual nanorods coupled together to produce hybridized bonding and antibonding resonance modes. Previous studies using a condenser for illumination result in averaged signals over all excitation angles. By exciting an individual dimer obliquely at different angles, we demonstrate that these two new resonance modes are highly tunable and sensitive to the angle between the excitation polarization and the dimer orientation, which follows cos2 u dependence. Moreover, for dimer structures with various structure angles, the resonance wavelengths as well as the refractive index sensitivities were found independent of the structure angle. Calculated angle-resolved plasmonic properties are in good agreement with the measurements. The assembled nanostructures investigated here are important for fundamental researches as well as potential applications when they are used as building blocks in plasmon-based optical and optoelectronic devices.

英文摘要:

Through wet-chemical assembly methods, gold nanorods were placed close to each other and formed a dimer with a gap distance similar to 1 nm, and hence degenerated plasmonic dipole modes of individual nanorods coupled together to produce hybridized bonding and antibonding resonance modes. Previous studies using a condenser for illumination result in averaged signals over all excitation angles. By exciting an individual dimer obliquely at different angles, we demonstrate that these two new resonance modes are highly tunable and sensitive to the angle between the excitation polarization and the dimer orientation, which follows cos(2)phi dependence. Moreover, for dimer structures with various structure angles, the resonance wavelengths as well as the refractive index sensitivities were found independent of the structure angle. Calculated angle-resolved plasmonic properties are in good agreement with the measurements. The assembled nanostructures investigated here are important for fundamental researches as well as potential applications when they are used as building blocks in plasmon-based optical and optoelectronic devices.

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