English

Capacitance and compressibility of heterostructures with strong electronic correlations

Strongly Correlated Electrons 2017-01-27 v2

Abstract

Strong electronic correlations related to a repulsive local interaction suppress the electronic compressibility in a single-band model, and the capacitance of a corresponding metallic film is directly related to its electronic compressibility. Both statements may be altered significantly when two extensions to the system are implemented which we investigate here: (i) we introduce an attractive nearest-neighbor interaction VV as antagonist to the repulsive on-site repulsion UU, and (ii) we consider nano-structured multilayers (heterostructures) assembled from two-dimensional layers of these systems. We determine the respective total compressibility κ\kappa and capacitance CC of the heterostructures within a strong coupling evaluation, which builds on a Kotliar-Ruckenstein slave-boson technique. Whereas the capacitance C(n)C(n) for electronic densities nn close to half-filling is suppressed---illustrated by a correlation induced dip in C(n)C(n)---it may be appreciably enhanced close to a van Hove singularity. Moreover, we show that the capacitance may be a non-monotonic function of UU close to half-filling for both attractive and repulsive VV. The compressibility κ\kappa can differ from CC substantially, as κ\kappa is very sensitive to internal electrostatic energies which in turn depend on the specific set-up of the heterostructure. In particular, we show that a capacitor with a polar dielectric has a smaller electronic compressibility and is more stable against phase separation than a standard non-polar capacitor with the same capacitance.

Keywords

Cite

@article{arxiv.1609.06263,
  title  = {Capacitance and compressibility of heterostructures with strong electronic correlations},
  author = {Kevin Steffen and Raymond Frésard and Thilo Kopp},
  journal= {arXiv preprint arXiv:1609.06263},
  year   = {2017}
}
R2 v1 2026-06-22T15:55:44.361Z