Correlated Exciton Transport in Rydberg-Dressed-Atom Spin Chains
Abstract
We investigate the transport of excitations through a chain of atoms with non-local dissipation introduced through coupling to additional short-lived states. The system is described by an effective spin-1/2 model where the ratio of the exchange interaction strength to the reservoir coupling strength determines the type of transport, including coherent exciton motion, incoherent hopping and a regime in which an emergent length scale leads to a preferred hopping distance far beyond nearest neighbors. For multiple impurities, the dissipation gives rise to strong nearest-neighbor correlations and entanglement. These results highlight the importance of non-trivial dissipation, correlations and many-body effects in recent experiments on the dipole-mediated transport of Rydberg excitations.
Keywords
Cite
@article{arxiv.1504.01892,
title = {Correlated Exciton Transport in Rydberg-Dressed-Atom Spin Chains},
author = {H. Schempp and G. Günter and S. Wüster and M. Weidemüller and S. Whitlock},
journal= {arXiv preprint arXiv:1504.01892},
year = {2015}
}
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5 pages