Journal of the Physical Society of Japan
Online ISSN : 1347-4073
Print ISSN : 0031-9015
ISSN-L : 0031-9015
Effective Mass Theory of Carbon Nanotubes with Vacancies in Magnetic Fields
Masatsura Igami, Takeshi Nakanishi, Tsuneya Ando
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2001 年 70 巻 2 号 p. 481-491

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抄録
An effective-mass theory is developed on transport of non-doped carbon nanotubes with local and short-range impurities in the presence of a magnetic field. The conductance is shown to be scaled completely by the field component in the direction of impurities. In a weak-field regime, the conductance strongly depends on strength of potential and the difference in the number of impurities at A and B sublattices Δ NAB. In a strong-field limit, the conductance is reduced to e2/π\hbar if impurities exist only on A or B sublattices and vanishes in all other cases. These results are intuitively understood by localized charge distribution of the wave function in magnetic fields.
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© The Physical Society of Japan 2001
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