Possible explanation for the conductance of a single quantum unit in metallic carbon nanotubes

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초록

The quantum conductance of a metallic carbon nanotube with one end immersed in a jellium metal is studied. We find that the incident pi*-band electrons, having a very high angular momentum with respect to the tube axis, go through the tube without being scattered by the free electrons in surrounding metal and contribute a quantum unit (2e(2)/h) to the conductance. On the other hand, the incident pi-band electrons, with the p(z) atomic orbitals in phase along the tube circumference, experience strong resonant back-scattering because the low-angular-momentum states at the Fermi level have a dominantly metallic character in the nanotube-jellium metal coexistence region. These results provide a possible explanation for the experimentally observed conductance of one quantum unit instead of two for nanotubes with one end dipped into liquid metal such as mercury. [S0163-1829(99)51044-8].

키워드

ELECTRONIC-STRUCTURE; MICROTUBULES; TUBULES
제목
Possible explanation for the conductance of a single quantum unit in metallic carbon nanotubes
저자
Choi, Hyoung Joon; Ihm, Jisoon; Yoon, Young-Gui; Louie, Steven G.
DOI
10.1103/PhysRevB.60.R14009
발행일
1999-11
유형
Article
저널명
Physical Review B - Condensed Matter and Materials Physics
권
60
호
20
페이지
R14009 ~ R14011