English

Glassy dynamics in geometrically frustrated Coulomb liquids without disorder

Strongly Correlated Electrons 2015-07-22 v4 Disordered Systems and Neural Networks

Abstract

We show that introducing long-range Coulomb interactions immediately lifts the massive ground state degeneracy induced by geometric frustration for electrons on quarter-filled triangular lattices in the classical limit. Important consequences include the stabilization of a stripe-ordered crystalline (global) ground state, but also the emergence of very many low-lying metastable states with amorphous "stripe-glass" spatial structures. Melting of the stripe order thus leads to a frustrated Coulomb liquid at intermediate temperatures, showing remarkably slow (viscous) dynamics, with very long relaxation times growing in Arrhenius fashion upon cooling, as typical of strong glass formers. On shorter time scales, the system falls out of equilibrium and displays the aging phenomena characteristic of supercooled liquids above the glass transition. Our results show remarkable similarity with the recent observations of charge-glass behavior in ultra-clean triangular organic materials of the θ\theta-(BEDT-TTF)2_2 family.

Keywords

Cite

@article{arxiv.1412.4441,
  title  = {Glassy dynamics in geometrically frustrated Coulomb liquids without disorder},
  author = {Samiyeh Mahmoudian and Louk Rademaker and Arnaud Ralko and Simone Fratini and Vladimir Dobrosavljević},
  journal= {arXiv preprint arXiv:1412.4441},
  year   = {2015}
}

Comments

5 pages,4 figures