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The Fano-Like Resonance in Self-Assembled Trimer Clusters

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【作者】 张梅李粮生郑宁史庆藩

【Author】 ZHANG Mei;LI Liang-Sheng;ZHENG Ning;SHI Qing-Fan;Faculty of Computers,Guangdong University of Technology;Science and Technology on Electromagnetic Scattering Laboratory;School of Physics,Beijing Institute of Technology;

【机构】 Faculty of Computers,Guangdong University of TechnologyScience and Technology on Electromagnetic Scattering LaboratorySchool of Physics,Beijing Institute of Technology

【摘要】 We illustrate that three identical nanocylinders self-assembled into a trimer with a small interpaxticle gap separation support strong Fano-like interference.The asymmetry line shape of the Fano-like resonance can be controlled by modifying the cluster structures,and a narrow linewidth between a peak and a dip is displayed in the line trimer.The resonant behaviors of the trimers could be strengthened by increasing the permittivity of the nanorods,and the asymmetry resonance is highly sensitive to the angle of the incident wave due to the orientation-dependent coupling between the cylinders in the cluster.The present study provides a way to investigate the environmental change caused by the reshaped asymmetry line,which can be applied to future high-performance resonance sensors.

【Abstract】 We illustrate that three identical nanocylinders self-assembled into a trimer with a small interpaxticle gap separation support strong Fano-like interference.The asymmetry line shape of the Fano-like resonance can be controlled by modifying the cluster structures,and a narrow linewidth between a peak and a dip is displayed in the line trimer.The resonant behaviors of the trimers could be strengthened by increasing the permittivity of the nanorods,and the asymmetry resonance is highly sensitive to the angle of the incident wave due to the orientation-dependent coupling between the cylinders in the cluster.The present study provides a way to investigate the environmental change caused by the reshaped asymmetry line,which can be applied to future high-performance resonance sensors.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 11104013 and 10975014;the Excellent Young Scholars Research Fund of the Beijing Institute of Technology
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年07期
  • 【分类号】O441
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