Finite $f$-Electron Bandwidth in a Heavy Fermion Model

ORAL

Abstract

Determinant Quantum Monte Carlo is used to study the effect of non-zero hopping $t_f$ in the localized $f$-band of the periodic Anderson model in two dimensions. We show that a remnant of the band insulator to metal line at $U_f$ = 0 persists in the interacting system, manifesting itself as a maximal tendency toward antiferromagnetic correlations at low temperature. In this optimal $t_f$ region, short- and long-range spin correlations develop at similar temperatures in stark contrast with the more common scenario where short range correlations are stronger and develop at higher temperature. The effect that finite $t_f$ has on Kondo screening is investigated by considering the evolution of the local density of states for selected $t_f$ as a function of $V$.

*Research supported by the CNRS-UC Davis EPOCAL LIA joint research grant; by NSF-PIF-1005503 and DOE SSAAP DE-NA0001842.

Authors

  • Axel Euverte

    • Institute non lineaire de Nice
  • Simone Chiesa

    • College of William and Mary
  • Richard Scalettar

    • Physics Department, UC Davis
    • UC Davis
    • Physics Department, University of California, Davis
  • George Batrouni

    • Institut Non-Lin\'eaire de Nice, University of Nice
    • Institute non lineaire de Nice
    • Institut Non-Lineaire de Nice, University of Nice, France