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Generalized many-channel conductance formula with application to small rings

Physical review. B, Condensed matter · 1985 · Vol. 31(10) · pp. 6207–6215
Μ. BüttikerY. ImryRolf LandauerS. Pinhas

Abstract

The conductance of a sample scattering elastically and coupled to leads with many channels is derived. We assume that all the incident channels on one side of the sample are fed from the same chemical potential. The transmitted and reflected streams are determined by the incident streams through the multichannel scattering properties of the sample. We do not assume that the channels equilibrate with each other. Our result differs from those given earlier by other authors, except for that of Azbel [J. Phys. C 14, L225 (1981)], which is confirmed. We point out that a similar result is obtained for the conductance in a single channel at a temperature above zero. As an application, we obtain the dependence on channel number N of the contributions to the conductance of a small ring, periodic in the Aharonov-Bohm flux through it. Terms whose period is h/e as well as those with period h/2e vary with N as 1/N.

Quantum and electron transport phenomenaSemiconductor Quantum Structures and DevicesMolecular Junctions and NanostructuresConductancePhysicsScatteringChannel (broadcasting)Flux (metallurgy)Condensed matter physicsPeriod (music)Zero (linguistics)STREAMSMaterials science

Funding

  • Tel Aviv University
Citations
3,213
FWCI
28.41
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36
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References
Weak localization in thin films
Physics Reports · 1984 · 2,125 citations
Josephson behavior in small normal one-dimensional rings
Physics Letters A · 1983 · 1,301 citations
Quantum tunnelling in a dissipative system
Annals of Physics · 1983 · 3,562 citations
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