Conductance Fluctuations in Mesoscopic Quantum Wires
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概要
- 論文の詳細を見る
The conductance fluctuations in mesoscopic quantum wires at zero temperature are studied by using the tight binding model and the transfer matrix formalism with the Landauer formula. The numerical calculations for the conductance g (scaled by e^2/h) are carried out for the overall range from the ballistic to the localized regime, and it is found numerically that a relation between the averaged conductance <g> and the conductance fluctuation δg is described by the single parameter near the ballistic regime and also near the localized regime. In the ballistic regime, we find analytically that δg/M is proportional to (1-<g>/2M), which agrees well with the result of the numerical calculations (M being the channel number). By using the conductance formula due to the resonant tunneling, we discuss the behavior of the conductance near the localized regime, and find analytically that the ratio (δg)^2/<g> tends to the value 0.5 as<g>→0, which is consistent with the numerical result.
- 社団法人日本物理学会の論文
- 1994-03-15
著者
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TANKEI Katsuichi
Laboratory of Physics, Matsusaka University
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NAGAOKA Yosuke
Yukawa Institute for Theoretical Physics, Kyoto University
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Nagaoka Yosuke
Yukawa Institute For Theoretical Physics Kyoto University
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Tankei Katsuichi
Laboratory Of Physics Matsusaka University
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Tankei K
Laboratory Of Physics Matsusaka University
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Ikegami Mitsuhiro
Yukawa Institute for Theoretical Physics, Kyoto University
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Ikegami Mitsuhiro
Yukawa Institute For Theoretical Physics Kyoto University
関連論文
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- Conductance Fluctuations in Mesoscopic Quantum Wires
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- Effect of Electronic States of Electrodes on Coulomb Blockade
- Quantum Mechanics of an Electron on a Curved Interface
- Numerical Study of the Aharonov-Bohm Effect in Mesoscopic Systems
- Conductance Fluctuation of Mesoscopic Systems near the Insulating Regime
- Welcome
- Transition from Semi-Classical to Quantum Transport in Quasi-Ballistic Wires