Berlin 2005 –
scientific programme
TT 13: Transport - Quantum Coherence and Quantum Information Systems
Saturday, March 5, 2005, 08:45–12:45, TU H3027
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08:45 |
TT 13.1 |
Relation between high- and low-frequency noise — •Alexander Shnirman, Gerd Schön, Ivar Martin, and Yuriy Makhlin
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09:00 |
TT 13.2 |
Fermionic Mach-Zehnder interferometer subject to a Quantum Bath — •Florian Marquardt
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09:15 |
TT 13.3 |
Perfect state transfer through dispersive quantum chains — •Daniel Burgarth and Sougato Bose
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09:30 |
TT 13.4 |
Cluster States From Heisenberg Interaction — •Massoud Borhani
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09:45 |
TT 13.5 |
Entanglement measures for multipartite qubit systems and beyond — •Andreas Osterloh and Jens Siewert
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10:00 |
TT 13.6 |
Single Electron Spin Dynamics due to Interaction with Nuclear Spins investigated with Time-dependent DMRG — •Andreas Friedrich, Alexander V. Khaetskii, and Ulrich Schollwöck
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10:15 |
TT 13.7 |
Quantum-Error-Correction in spatially correlated quantum-noise — •Rochus Klesse and Sandra Frank
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10:30 |
TT 13.8 |
Quantum Frustration in the damped harmonic Oszillator — •Heinerich Kohler and Fernando Sols
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10:45 |
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15 min. break
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11:00 |
TT 13.9 |
Multiphoton antiresonance and Rabi oscillations of ac driven quantum oscillators — •M. V. Fistul and M. I. Dykman
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11:15 |
TT 13.10 |
Charge Qubits for Quantum Computation: Chances and Limitations — •Martina Hentschel, Eduardo R. Mucciolo, and Harold U. Baranger
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11:30 |
TT 13.11 |
Inductively coupled charge qubits with asymmetric SQUIDs — •Carsten Hutter, Yuriy Makhlin, Alexander Shnirman, and Gerd Schön
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11:45 |
TT 13.12 |
Coherence stabilization of a driven two-qubit gate by AC fields — •Sigmund Kohler, Karen M. Fonseca Romero, and Peter Hänggi
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12:00 |
TT 13.13 |
Spectroscopy of a driven solid-state qubit and its detector — •M. Thorwart, M.C. Goorden, and M. Grifoni
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12:15 |
TT 13.14 |
Theoretical Description of Cavity-QED with Superconducting Flux Qubits — •Markus J. Storcz, Matteo Mariantoni, Rudolf Gross, and Frank K. Wilhelm
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12:30 |
TT 13.15 |
Spectroscopic Investigation of Dynamic Features of a Ring-Type Charge Qubit — •Thomas Wagner, Detlef Born, Vladimir Shnyrkov, Wolfram Krech, Evgeni Il’ichev, and Hans-Georg Meyer
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