Quantum simulation of small-polaron formation with trapped ions
Quantum Gases
2012-12-18 v2 Quantum Physics
Abstract
We propose a quantum simulation of small-polaron physics using a one-dimensional system of trapped ions acted upon by off-resonant standing waves. This system, envisioned as an array of microtraps, in the single-excitation case allows the realization of the anti-adiabatic regime of the Holstein model. We show that the strong excitation-phonon coupling regime, characterized by the formation of small polarons, can be reached using realistic values of the relevant system parameters. Finally, we propose measurements of the quasiparticle residue and the average number of phonons in the ground state, experimental probes validating the polaronic character of the phonon-dressed excitation.
Keywords
Cite
@article{arxiv.1206.7010,
title = {Quantum simulation of small-polaron formation with trapped ions},
author = {Vladimir M. Stojanovic and Tao Shi and C. Bruder and J. Ignacio Cirac},
journal= {arXiv preprint arXiv:1206.7010},
year = {2012}
}
Comments
accepted for publication in Phys. Rev. Lett