Resonant Regimes in the Fock-Space Coherence of Multilevel Quantum Dots
Abstract
The coherence between quantum states with different particle numbers --- the Fock-space coherence --- qualitatively differs from the more common Hilbert-space coherence between states with equal particle numbers. For a quantum dot with multiple channels available for transport, we find the conditions for decoupling the dynamics of the Fock-space coherence from both the Hilbert-space coherence as well as the population dynamics. We further find specific energy and coupling regimes where a long-lived resonance in the Fock-space coherence of the system is realized, even where no resonances are found either in the populations or Hilbert-space coherence. Numerical calculations show this resonance remains robust in the presence of both boson-mediated relaxation and transport through the quantum dot.
Keywords
Cite
@article{arxiv.1105.5354,
title = {Resonant Regimes in the Fock-Space Coherence of Multilevel Quantum Dots},
author = {Eduardo Vaz and Jordan Kyriakidis},
journal= {arXiv preprint arXiv:1105.5354},
year = {2012}
}
Comments
15 pages, 4 figures