Using an improved version of the projection quantum Monte Carlo technique, we study the square-lattice Hubbard model with nearest-neighbor hopping t and next-nearest-neighbor hopping t' by simulation of lattices with up to 20 x 20 sites. For a given R = 2t'/t, we consider that filling which leads to a singular density of states of the noninteracting problem. For repulsive interactions, we find an itinerant ferromagnet (antiferromagnet) for R = 0.94 (R = 0.2). This is consistent with the prediction of the T-matrix approximation, which sums the most singular set of diagrams
This is an author-created, un-copyedited version of an article accepted for publication in Acta Phys...
. Quantum Monte Carlo simulations are used to determine the effects of disorder on magnetic, charge ...
A one-dimensional Hubbard model with nearest and (negative) next-nearest neighbour hopping is studie...
Using an improved version of the projection quantum Monte Carlo technique, we study the square-latti...
We investigate the magnetic instabilities of the nondegenerate (s-band) and a degenerate (d-band) Hu...
[[abstract]]We report large scale determinant quantum Monte Carlo calculations of the effective band...
A single-band Hubbard model with nearest and next-nearest neighbor hopping is studied for d = 1, 2, ...
Cataloged from PDF version of article.This thesis is mainly an effort to reproduce the well-known re...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
To understand the effects of orbital degeneracy on magnetism, in particular the effects of Hund's ru...
The Hubbard model on fcc-type lattices is studied in the dynamical mean-field theory of infinite spa...
We present calculations of the $tt'$-Hubbard model using Quantum Monte Carlo techniques. The paramet...
Using the path integral representation, bulk thermodynamic properties of the two-dimensional Hubbard...
A Quantum Monte Carlo method of calculating operator expectation values for the ground state of the ...
Abstract. QuantumMonte Carlo simulations are used to determine the eects of disorder on magnetic, ch...
This is an author-created, un-copyedited version of an article accepted for publication in Acta Phys...
. Quantum Monte Carlo simulations are used to determine the effects of disorder on magnetic, charge ...
A one-dimensional Hubbard model with nearest and (negative) next-nearest neighbour hopping is studie...
Using an improved version of the projection quantum Monte Carlo technique, we study the square-latti...
We investigate the magnetic instabilities of the nondegenerate (s-band) and a degenerate (d-band) Hu...
[[abstract]]We report large scale determinant quantum Monte Carlo calculations of the effective band...
A single-band Hubbard model with nearest and next-nearest neighbor hopping is studied for d = 1, 2, ...
Cataloged from PDF version of article.This thesis is mainly an effort to reproduce the well-known re...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
To understand the effects of orbital degeneracy on magnetism, in particular the effects of Hund's ru...
The Hubbard model on fcc-type lattices is studied in the dynamical mean-field theory of infinite spa...
We present calculations of the $tt'$-Hubbard model using Quantum Monte Carlo techniques. The paramet...
Using the path integral representation, bulk thermodynamic properties of the two-dimensional Hubbard...
A Quantum Monte Carlo method of calculating operator expectation values for the ground state of the ...
Abstract. QuantumMonte Carlo simulations are used to determine the eects of disorder on magnetic, ch...
This is an author-created, un-copyedited version of an article accepted for publication in Acta Phys...
. Quantum Monte Carlo simulations are used to determine the effects of disorder on magnetic, charge ...
A one-dimensional Hubbard model with nearest and (negative) next-nearest neighbour hopping is studie...