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Conductance oscillations through double slits in a quantum wire

Identifieur interne : 001D19 ( Main/Exploration ); précédent : 001D18; suivant : 001D20

Conductance oscillations through double slits in a quantum wire

Auteurs : Yong S. Joe [États-Unis] ; M. Khatun [États-Unis] ; Ronald M. Cosby [États-Unis]

Source :

RBID : ISTEX:A72CC663500BCD2F5F77F7FCC625089FEBC0F3FC

English descriptors

Abstract

Abstract: We report theoretical studies of electron transport in a quantum wire containing double-paralleled or double-series slits and a “detector” slit. Strong conductance oscillations due to quantum interference are produced in both structures when the position of a detector slit in the quantum wire is changed. We interpret these interference effects in terms of multiple reflections of a phase-coherent electron along the quantum wire and circulating-bound-states in a resonant-box region. We also examine the transmission coefficients and electronic phase shifts which provide insights into the origins of conductance oscillations. For the double-paralleled system, the dependence of the interference effects on the slit width and the detector distance is discussed.

Url:
DOI: 10.1016/0038-1098(94)00697-0


Affiliations:


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Le document en format XML

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<term>Conductance</term>
<term>Conductance minima</term>
<term>Conductance modulations</term>
<term>Conductance oscillations</term>
<term>Detector</term>
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<term>Quantum</term>
<term>Quantum interference</term>
<term>Quantum interference effects</term>
<term>Quantum wire</term>
<term>Semiconductor</term>
<term>Slit</term>
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