Vibrational mechanics in an optical lattice: controlling transport via potential renormalization
Statistical Mechanics
2015-06-03 v1 Atomic Physics
Abstract
We demonstrate theoretically and experimentally the phenomenon of vibrational resonance in a periodic potential, using cold atoms in an optical lattice as a model system. A high-frequency (HF) drive, with frequency much larger than any characteristic frequency of the system, is applied by phase-modulating one of the lattice beams. We show that the HF drive leads to the renormalization of the potential. We used transport measurements as a probe of the potential renormalization. The very same experiments also demonstrate that transport can be controlled by the HF drive via potential renormalization.
Keywords
Cite
@article{arxiv.1112.2341,
title = {Vibrational mechanics in an optical lattice: controlling transport via potential renormalization},
author = {A. Wickenbrock and P. C. Holz and N. A. Abdul Wahab and P. Phoonthong and D. Cubero and F. Renzoni},
journal= {arXiv preprint arXiv:1112.2341},
year = {2015}
}
Comments
Phys. Rev. Lett., in press