Low-dimensional quantum transport properties of chemically-disordered carbon nanotubes: From weak to strong localization regimes

被引:38
作者
Avriller, Remi [1 ]
Roche, Stephan [1 ]
Triozon, Francois [2 ]
Blase, Xavier [3 ,4 ]
Latil, Sylvain [5 ]
机构
[1] DRFMC SPSMS GT, Commiss Engn Atom, F-38054 Grenoble, France
[2] LETI MINTEC, Commiss Energie Atom, F-38054 Grenoble, France
[3] Univ Lyon 1, LPMCN, F-69622 Villeurbanne, France
[4] CNRS, UMR 5586, F-69622 Villeurbanne, France
[5] Univ Namur, Lab Phys Solide, B-5000 Namur, Belgium
来源
MODERN PHYSICS LETTERS B | 2007年 / 21卷 / 29期
关键词
carbon nanotubes; mesoscopic transport; chemical doping;
D O I
10.1142/S0217984907014322
中图分类号
O59 [应用物理学];
学科分类号
摘要
In this review, the quantum transport of nitrogen-doped metallic carbon nanotubes under magnetic field are explored. An accurate modeling of chemical disorder effects is derived from ab initio calculations. General properties for low bias Landauer conductance are investigated in the coherent regime, which enlighten the strong interplay between band structure and quantum interference effects. Characteristic transport length scales such as the elastic mean free path and localization length are extracted from phenomenological laws as well as scaling features with nanotube radius and doping level. The statistical analysis of conductance properties allow us to study the transition between weak and strong localization regimes.
引用
收藏
页码:1955 / 1982
页数:28
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