Conductance oscillations through double slits in a quantum wire
Identifieur interne : 001D19 ( Main/Exploration ); précédent : 001D18; suivant : 001D20Conductance oscillations through double slits in a quantum wire
Auteurs : Yong S. Joe [États-Unis] ; M. Khatun [États-Unis] ; Ronald M. Cosby [États-Unis]Source :
- Solid State Communications [ 0038-1098 ] ; 1995.
English descriptors
- Teeft :
- Alternative electron paths, Ball state university, Bernstein kriman, Branch interference, Conductance, Conductance minima, Conductance modulations, Conductance oscillations, Detector, Detector distance, Detector slit, Different fermi energies, Double slit, Double slits, Doubleparalleled slits, Electron waves, Fermi energy, Interference effects, Multiple reflections, Oscillation, Other hand, Phys, Propagating modes, Quantum, Quantum interference, Quantum interference effects, Quantum wire, Semiconductor, Slit, Slit width, Straight lines, Strong conductance oscillations, Transmission coefficients.
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 minima</term>
<term>Conductance modulations</term>
<term>Conductance oscillations</term>
<term>Detector</term>
<term>Detector distance</term>
<term>Detector slit</term>
<term>Different fermi energies</term>
<term>Double slit</term>
<term>Double slits</term>
<term>Doubleparalleled slits</term>
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<term>Fermi energy</term>
<term>Interference effects</term>
<term>Multiple reflections</term>
<term>Oscillation</term>
<term>Other hand</term>
<term>Phys</term>
<term>Propagating modes</term>
<term>Quantum</term>
<term>Quantum interference</term>
<term>Quantum interference effects</term>
<term>Quantum wire</term>
<term>Semiconductor</term>
<term>Slit</term>
<term>Slit width</term>
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<front><div type="abstract" xml:lang="en">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.</div>
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