English

Multiple particle-hole pair creation in the Fermi-Hubbard model by a pump laser

Quantum Physics 2017-05-17 v1 Strongly Correlated Electrons

Abstract

We study the Fermi-Hubbard model in the strongly correlated Mott phase under the influence of a harmonically oscillating electric field, e.g., a pump laser. In the Peierls representation, this pump field can be represented as an oscillating phase of the hopping rate J(t)J(t), such that the effective time-averaged rate Jˉ\bar J is reduced, i.e., switching the pump laser suddenly is analogous to a quantum quench. Apart from this time-averaged rate Jˉ\bar J, it is well known that the oscillating component of J(t)J(t) can resonantly create particle-hole pairs if the pump frequency ωpump\omega_{\rm pump} equals (or a little exceeds) the Mott gap. In addition, we find that it is possible to create multiple pairs if ωpump\omega_{\rm pump} is near an integer multiple of the gap. These findings should be relevant for pump-probe experiments.

Keywords

Cite

@article{arxiv.1602.00871,
  title  = {Multiple particle-hole pair creation in the Fermi-Hubbard model by a pump laser},
  author = {Nicolai ten Brinke and Manuel Ligges and Uwe Bovensiepen and Ralf Schützhold},
  journal= {arXiv preprint arXiv:1602.00871},
  year   = {2017}
}