Transport Properties of Double-Walled Carbon Nanotubes in a Transverse Electric Field(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
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概要
- 論文の詳細を見る
Electronic and transport properties of finite length double-walled carbon nanotubes subject to the influences of a transverse electric field are studied by the tight-binding model. The electric field would modify state energies and modulate energy gap. Effects of intertube interactions on the electronic and transport properties are also investigated. The electronic structures are found to exhibit rich dependence on the field strength, the intertube interactions, and the nanotube length. The variations of state energies with the electric field will also be reflected in the electrical and thermal conductance. The positions of the conductance peaks are strongly dependent on the intertube interactions, and the nanotube length. The heights of the electrical and thermal conductance peaks display the quantized behavior, while those of the Peltier coefficient do not. The different symmetric configurations can be distinguished by the electrical conductance measurements.
- 社団法人日本物理学会の論文
- 2007-10-15
著者
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Lin Ming
Department Of Physics National Cheng Kung University
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Lee Chi
Department Of Physics National Cheng Kung University
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LI To
Department of Electrical Engineering, Kun Shan University
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Lee Chi
Department Of Applied Zoology Taiwan Agricultural Research Institute
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Li To
Department Of Electrical Engineering Kun Shan University
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