English

Exploring nonequilibrium phases of photo-doped Mott insulators with Generalized Gibbs ensembles

Strongly Correlated Electrons 2022-01-19 v2 Mesoscale and Nanoscale Physics Statistical Mechanics

Abstract

Photo-excited strongly correlated systems can exhibit intriguing non-thermal phases, but the theoretical investigation of them poses significant challenges. In this work, we introduce a generalized Gibbs ensemble type description for long-lived photo-doped states in Mott insulators. This framework enables systematic studies of photo-induced phases based on equilibrium methods, as demonstrated here for the one-dimensional extended Hubbard model. We determine the nonequilibrium phase diagram, which features η\eta-pairing and charge density wave phases in a wide doping range, and reveal physical properties of these phases. We show that the peculiar kinematics of photo-doped carriers, and the interaction between them, play an essential role in the formation of the non-thermal phases, and we clarify the differences between photo-doped Mott insulators, chemically-doped Mott insulators and photo-doped semiconductors. Our results demonstrate a new path for the systematic exploration of nonequilibrium strongly correlated systems and show that photo-doped Mott insulators host different phases than conventional semiconductors.

Keywords

Cite

@article{arxiv.2105.13560,
  title  = {Exploring nonequilibrium phases of photo-doped Mott insulators with Generalized Gibbs ensembles},
  author = {Yuta Murakami and Shintaro Takayoshi and Tatsuya Kaneko and Zhiyuan Sun and Denis Golež and Andrew J. Millis and Philipp Werner},
  journal= {arXiv preprint arXiv:2105.13560},
  year   = {2022}
}

Comments

8page,4 figures + 8page, 16 figures