Floquet-engineered vibrational dynamics in a two-dimensional array of trapped ions
Quantum Physics
2019-11-27 v1
Abstract
We demonstrate Floquet engineering in a basic yet scalable 2D architecture of individually trapped and controlled ions. Local parametric modulations of detuned trapping potentials steer the strength of long-range inter-ion couplings and the related Peierls phase of the motional state. In our proof-of-principle, we initialize large coherent states and tune modulation parameters to control trajectories, directions and interferences of the phonon flow. Our findings open a new pathway for future Floquet-based trapped-ion quantum simulators targeting correlated topological phenomena and dynamical gauge fields.
Cite
@article{arxiv.1907.06376,
title = {Floquet-engineered vibrational dynamics in a two-dimensional array of trapped ions},
author = {Philip Kiefer and Frederick Hakelberg and Matthias Wittemer and Alejandro Bermúdez and Diego Porras and Ulrich Warring and Tobias Schaetz},
journal= {arXiv preprint arXiv:1907.06376},
year = {2019}
}
Comments
11 pages, 5 figures