HL 24: Quantum dots and wires: Transport properties II
Tuesday, March 27, 2007, 14:00–17:00, H15
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14:00 |
HL 24.1 |
The 0.7-anomaly in the conductance of a quantum point-contact and its interpretation in a Kondo model — •Monika Fleischer, Daniel Schefzyk, David Wharam, David Ritchie, and Michael Pepper
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14:15 |
HL 24.2 |
Sound-wave-like collective electronic excitations in atomic-scale conductive chains — •Tadaaki NAGAO
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14:30 |
HL 24.3 |
Theory of super-Poissonian noise in tunneling through a quantum dot stack — •Gerold Kiesslich, Eckehard Schöll, Frank Hohls, and Rolf Haug
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14:45 |
HL 24.4 |
Full counting statistics on a single dot device — •C. Fricke, F. Hohls, M. Reinwald, W. Wegscheider, and R. J. Haug
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15:00 |
HL 24.5 |
Quantum Description of Nuclear Spin Cooling in a Quantum Dot — Henning Christ, Ignacio Cirac, and •Geza Giedke
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15:15 |
HL 24.6 |
Magnetic-field-induced modification of the wave-functions in InAs quantum dots — •Wen Lei, Oliver Wibbelhoff, Christian Notthoff, Axel Lorke, Dirk Reuter, and Andreas Wieck
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15:30 |
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15 min. break
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15:45 |
HL 24.7 |
Simulation of quantum transport in semiconductor nanocolumns with non-uniform lateral confinement — •Katharina Peter, Klaus Michael Indlekofer, Jakob Wensorra, Mihail Ion Lepsa, Hans Lüth, and Detlev Grützmacher
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16:00 |
HL 24.8 |
Multiple Transitions of the Spin Configuration in Quantum Dots — •Maximilian C. Rogge, C. Fühner, and R. J. Haug
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16:15 |
HL 24.9 |
Quantenkinetik eines Quantendraht-Quantenpunkt-Systems: Wellenfrontdynamik nach räumlich homogener Anregung — •Doris Reiter, Vollrath Martin Axt und Tillmann Kuhn
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16:30 |
HL 24.10 |
Realistic simulation of nanowire transistors: A multi-configurational approach to Coulomb effects — •Klaus Michael Indlekofer, Joachim Knoch, and Joerg Appenzeller
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16:45 |
HL 24.11 |
Theory of quantum computation with all-electronic Mach-Zehnder interferometers — •Tobias Zibold and Peter Vogl
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