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Trapped Ion Quantum Computing
Quantum Chemistry
A mesoscopic Rydberg impurity in an atomic quantum gas
arXiv
Authors: Richard Schmidt, H. R. Sadeghpour, E. Demler
Year
2015
Paper ID
26405
Status
Preprint
Abstract Read
~2 min
Abstract Words
121
Citations
N/A
Abstract
Giant impurity excitations with large binding energies are powerful probes for exploring new regimes of far out of equilibrium dynamics in few- and many-body quantum systems, as well as for in-situ observations of correlations. Motivated by recent experimental progress in spectroscopic studies of Rydberg excitations in ensembles of ultracold atoms, we develop a new theoretical approach for describing multiscale dynamics of Rydberg excitations in quantum Bose gases. We find that the crossover from few- to many-body dynamics manifests in a dramatic change in spectral profile from resolved molecular lines to broad Gaussian distributions representing a superpolaronic state in which many atoms bind to the Rydberg impurity. We discuss signatures of this crossover in the temperature and density dependence of the spectra.
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- Giant impurity excitations with large binding energies are powerful probes for exploring new regimes of far out of equilibrium dynamics in few- and many-body quantum systems...
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