Role of Frustration and Dimensionality in the Hubbard Model on the Stacked Square Lattice: Variational Cluster Approach
arXiv:0804.2548 · doi:10.1103/PhysRevB.79.144429
Abstract
Using variational cluster approach, we study influence of frustration and dimensionality on magnetic properties in the ground state of Hubbard model on a stacked square lattice in the large region (U/t=10), by changing the next-nearest-neighbor hopping, , and the interlayer hopping, . For small with , antiferromagnetic long-range order appears at small , and collinear magnetic long-range order at large . They are separated by a paramagnetic Mott insulating state which appears in the parameter region . For large , the paramagnetic Mott insulating state disappears and a direct transition between antiferromagnetic state and collinear magnetic state occurs at . We also find that the transition from the antiferromagnetic state to the paramagnetic Mott insulating state is of the second-order and that from the collinear magnetic state to the paramagnetic Mott insulating or the antiferromagnetic state is of the first-order.
7 pages, 6 figures, submitted to Physical Review B
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- Impact of the Dzyaloshinskii-Moriya interaction in strongly correlated itinerant systems
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