Non-equlibrium effects in transport through quantum dots
arXiv:cond-mat/0002135 · doi:10.1103/PhysRevB.61.16778
Abstract
The role of non-equilibrium effects in the conductance through quantum dots is investigated. Associated with single-electron tunneling are shake-up processes and the formation of excitonic-like resonances. They change qualitatively the low temperature properties of the system. We analyze by quantum Monte Carlo methods the renormalization of the effective capacitance and the gate-voltage dependent conductance. Experimental relevance is discussed.
10 pages, 8 postscript figures
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- Aharonov-Bohm oscillations of a particle coupled to dissipative environments
- Fermi Edge Singularities in Transport through Quantum Dots
- Assisted hopping in the Anderson impurity model: A flow equation study
- Effect of assisted hopping on the formation of local moments in magnetic impurities and quantum dots
- Proposal for measuring the parity anomaly in a topological superconductor ring
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