Spectral collapse via two-phonon interactions in trapped ions
Abstract
Two-photon processes have so far been considered only as resulting from frequency-matched second-order expansions of light-matter interaction, with consequently small coupling strengths. However, a variety of novel physical phenomena arises when such coupling values become comparable with the system characteristic frequencies. Here, we propose a realistic implementation of two-photon quantum Rabi and Dicke models in trapped-ion technologies. In this case, effective two-phonon processes can be explored in all relevant parameter regimes. In particular, we show that an ion chain under bichromatic laser drivings exhibits a rich dynamics and highly counterintuitive spectral features, such as interaction-induced spectral collapse.
Cite
@article{arxiv.1506.00493,
title = {Spectral collapse via two-phonon interactions in trapped ions},
author = {S. Felicetti and J. S. Pedernales and I. L. Egusquiza and G. Romero and L. Lamata and D. Braak and E. Solano},
journal= {arXiv preprint arXiv:1506.00493},
year = {2015}
}
Comments
Improved version