Phase coherent transmission through interacting mesoscopic systems
arXiv:cond-mat/0006361 · doi:10.1016/S0370-1573(00)00084-3
Abstract
This is a review of the phase coherent transmission through interacting mesoscopic conductors. As a paradigm we study the transmission amplitude and the dephasing rate for electron transport through a quantum dot in the Coulomb blockade regime. We summarize experimental and theoretical work devoted to the phase of the transmission amplitude. It is shown that the evolution of the transmission phase may be dominated by non-universal features in the short-time dynamics of the quantum dot. The controlled dephasing in Coulomb coupled conductors is investigated. Examples comprise a single or multiple quantum dots in close vicinity to a quantum point contact. The current through the quantum point contact "measures" the state of the dots and causes dephasing. The dephasing rate is derived using widely different theoretical approaches. The Coulomb coupling between mesoscopic conductors may prove useful for future work on electron coherence and quantum computing.
91 pages, 43 figures, to be published in Physics Reports
References in corpus (8)
- Shot Noise in Mesoscopic Conductors
- Quantum Transport in Semiconductor Nanostructures
- Continuous quantum measurement of a double dot
- Transmission Phase Shift of a Quantum Dot with Kondo Correlations
- Friedel phases and phases of transmission amplitudes in quantum scattering systems
- Effect of the measurement on the decay rate of a quantum system
- An Approximate Sign Sum Rule for the Transmission Amplitude Through a Quantum Dot
- General equation for Zeno-like effects in spontaneous exponential decay
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