IFIR   05409
INSTITUTO DE FISICA DE ROSARIO
Unidad Ejecutora - UE
artículos
Título:
Classical Antiferromagnetism in Kinetically Frustrated Electronic Models
Autor/es:
C. N. SPOSETTI; BRAVO BARBARA; TRUMPER, ADOLFO E.; GAZZA, CLAUDIO J.; MANUEL, LUIS O.
Revista:
PHYSICAL REVIEW LETTERS
Editorial:
AMER PHYSICAL SOC
Referencias:
Lugar: New York; Año: 2014 vol. 112 p. 187204 - 187208
ISSN:
0031-9007
Resumen:
We study, by means of the density matrix renormalization group, the infinite U Hubbard model?with one hole doped away from half filling?in triangular and square lattices with frustrated hoppings, which invalidate Nagaoka?s theorem. We find that these kinetically frustrated models have antiferromagnetic ground states with classical local magnetization in the thermodynamic limit. We identify the mechanism of this kinetic antiferromagnetism with the release of the kinetic energy frustration, as the hole moves in the established antiferromagnetic background. This release can occur in two different ways: by a nontrivial spin Berry phase acquired by the hole, or by the effective vanishing of the hopping amplitude along the frustrating loops.