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首页> 外文期刊>Journal of Physics. Condensed Matter >Magnetic order in the Hubbard model in three dimensions and the crossover to two dimensions
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Magnetic order in the Hubbard model in three dimensions and the crossover to two dimensions

机译:Hubbard模型中的磁阶为三个维度,并且与两个维度相交

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Systems of fermions described by the three-dimensional (3D) repulsive Hubbard model on a cubic lattice have recently attracted considerable attention due to their possible experimental realization via cold atoms in an optical lattice. Analytical and numerical results are limited away from half-filling. We study the ground state of the doped system from weak to intermediate interaction strengths within the generalized Hartree-Fock approximation. The exact solution to the self-consistent-field equations in the thermodynamic limit is obtained and the ground state is shown to exhibit antiferromagnetic order and incommensurate spin-density waves (SDW). At low interaction strengths, the SDW has unidirectional character with a leading wavevector along the 100-direction, and the system is metallic. As the interaction increases, the system undergoes a simultaneous structural and metal-to-insulator transition to a unidirectional SDW state along the 111-direction, with a different wavelength. We systematically determine the real and momentum space properties of these states. The crossover from 3D to two dimensions (2D) is then studied by varying the inter-plane hopping amplitude, which can be experimentally realized by tuning the distance between a stack of square-lattice layers. Detailed comparisons are made between the exact numerical results and predictions from the pairing model, a variational ansatz based on the pairing of spins in the vicinity of the Fermi surface. Most of the numerical results can be understood quantitatively from the ansatz, which provides a simple picture for the nature of the SDW states.
机译:立方晶格上的三维(3D)排斥哈伯德模型描述的费米子系统由于可能通过光学晶格中的冷原子进行实验实现而引起了人们的极大关注。分析和数值结果仅限于半填充。我们研究了广义Hartree-Fock近似中从弱相互作用强度到中等相互作用强度的掺杂系统的基态。获得了热力学极限中自洽场方程的精确解,并且基态显示出反铁磁阶数和自旋密度波(SDW)。在低交互强度下,SDW具有单向特性,并具有沿100方向的超前波矢,并且系统是金属的。随着相互作用的增加,系统会同时经历结构和金属到绝缘体的转变,并沿着111方向以不同的波长转变为单向SDW状态。我们系统地确定这些状态的实际和动量空间性质。然后,通过改变平面间跳变幅度来研究从3D到二维(2D)的交叉,这可以通过调整正方形晶格层之间的距离来通过实验实现。在精确的数值结果和配对模型的预测之间进行了详细的比较,配对模型是基于费米表面附近的自旋配对的变体ansatz。可以从ansatz定量地理解大多数数值结果,这为SDW状态的性质提供了简单的图像。

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