Transient current in a quantum dot subject to a change in coupling to its leads
The time-dependent non-crossing approximation is used to calculate the transient currents through a quantum dot in the Kondo regime subject to a sudden change in its coupling to the leads. The currents are found to display transient non-universal behaviour immediately after the perturbation and then...
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Published in | Journal of physics. Condensed matter Vol. 18; no. 39; pp. 8995 - 9006 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Bristol
IOP Publishing
04.10.2006
Institute of Physics |
Subjects | |
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Abstract | The time-dependent non-crossing approximation is used to calculate the transient currents through a quantum dot in the Kondo regime subject to a sudden change in its coupling to the leads. The currents are found to display transient non-universal behaviour immediately after the perturbation and then to follow a slow universal increase toward equilibrium. The timescales for the approach to equilibrium are shown to be the same as those recently identified in a study of transient currents in a quantum dot subject to a sudden change in the energy of the dot level (Plihal et al 2005 Phys. Rev. B 71 165321). We present improved numerical algorithms which enable relatively fast calculation of the transient response of quantum dots to sudden perturbations. |
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AbstractList | The time-dependent non-crossing approximation is used to calculate the transient currents through a quantum dot in the Kondo regime subject to a sudden change in its coupling to the leads. The currents are found to display transient non-universal behaviour immediately after the perturbation and then to follow a slow universal increase toward equilibrium. The timescales for the approach to equilibrium are shown to be the same as those recently identified in a study of transient currents in a quantum dot subject to a sudden change in the energy of the dot level (Plihal et al 2005 Phys. Rev. B 71 165321). We present improved numerical algorithms which enable relatively fast calculation of the transient response of quantum dots to sudden perturbations. |
Author | Nordlander, P Izmaylov, A F Goker, A Friedman, B A |
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Keywords | Time dependence Transient response Kondo effect Degenerate state Quantum dots Tunnel effect Anderson model Transport processes |
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References | 22 23 24 25 Pustilnik M (6) 2004; 16 26 27 28 29 Abrikosov A A (31) 1965; 2 Lu R (18) 2005; 17 30 32 12 13 14 15 16 17 19 1 2 Glazman L I (8) 1988; 47 3 4 5 Giuliano D (9) 2004; 16 7 Hewson A C (10) 2005; 17 Swirkowicz R (11) 2006; 18 20 21 |
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SubjectTerms | Condensed matter: electronic structure, electrical, magnetic, and optical properties Electron states and collective excitations in thin films, multilayers, quantum wells, mesoscopic and nanoscale systems Electronic structure and electrical properties of surfaces, interfaces, thin films and low-dimensional structures Exact sciences and technology Physics Quantum dots |
Title | Transient current in a quantum dot subject to a change in coupling to its leads |
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