Quantum Monte Carlo study of the two-dimensional fermion Hubbard model

被引:128
作者
Varney, C. N. [1 ]
Lee, C. -R. [2 ]
Bai, Z. J. [3 ]
Chiesa, S. [1 ]
Jarrell, M. [4 ]
Scalettar, R. T. [1 ]
机构
[1] Univ Calif Davis, Dept Phys, Davis, CA 95616 USA
[2] Natl Tsing Hua Univ, Dept Comp Sci, Hsinchu 30013, Taiwan
[3] Univ Calif Davis, Dept Comp Sci, Davis, CA 95616 USA
[4] Louisiana State Univ, Dept Phys & Astron, Baton Rouge, LA 70803 USA
来源
PHYSICAL REVIEW B | 2009年 / 80卷 / 07期
关键词
NARROW ENERGY BANDS; ELECTRON CORRELATIONS; NUMERICAL-SIMULATION; SPIN FLUCTUATIONS; SYSTEMS; ATOMS; GAS; SUPERCONDUCTIVITY; LATTICE; PHYSICS;
D O I
10.1103/PhysRevB.80.075116
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We report large scale determinant quantum Monte Carlo calculations of the effective bandwidth, momentum distribution, and magnetic correlations of the square lattice fermion Hubbard Hamiltonian at half-filling. The sharp Fermi surface of the noninteracting limit is significantly broadened by the electronic correlations but retains signatures of the approach to the edges of the first Brillouin zone as the density increases. Finite-size scaling of simulations on large lattices allows us to extract the interaction dependence of the antiferromagnetic order parameter, exhibiting its evolution from weak-coupling to the strong-coupling Heisenberg limit. Our lattices provide improved resolution of the Green's function in momentum space, allowing a more quantitative comparison with time-of-flight optical lattice experiments.
引用
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页数:8
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