English

M\"obius molecules and fragile Mott insulators

Strongly Correlated Electrons 2014-12-31 v1

Abstract

Motivated by the concept of M\"obius aromatics in organic chemistry, we extend the recently introduced concept of fragile Mott insulators (FMI) to ring-shaped molecules with repulsive Hubbard interactions threaded by a half-quantum of magnetic flux (hc/2ehc/2e). In this context, a FMI is the insulating ground state of a finite-size molecule that cannot be adiabatically connected to a single Slater determinant, i.e., to a band insulator, provided that time-reversal and lattice translation symmetries are preserved. Based on exact numerical diagonalization for finite Hubbard interaction strength UU and existing Bethe-ansatz studies of the one-dimensional Hubbard model in the large-UU limit, we establish a duality between Hubbard molecules with 4n4n and 4n+24n+2 sites, with nn integer. A molecule with 4n4n sites is an FMI in the absence of flux but becomes a band insulator in the presence of a half-quantum of flux, while a molecule with 4n+24n+2 sites is a band insulator in the absence of flux but becomes an FMI in the presence of a half-quantum of flux. Including next-nearest-neighbor-hoppings gives rise to new FMI states that belong to multidimensional irreducible representations of the molecular point group, giving rise to a rich phase diagram.

Keywords

Cite

@article{arxiv.1409.6732,
  title  = {M\"obius molecules and fragile Mott insulators},
  author = {Lukas Muechler and Joseph Maciejko and Titus Neupert and Roberto Car},
  journal= {arXiv preprint arXiv:1409.6732},
  year   = {2014}
}
R2 v1 2026-06-22T06:04:05.394Z