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Comparison of Calculations for the Hubbard Model Obtained with Quantum-Monte-Carlo, Exact, and Stochastic Diagonalization

机译:量子蒙特卡洛,精确和随机对角化获得的Hubbard模型的计算比较

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摘要

In this paper we compare numerical results for the ground state of the Hubbard model obtained by Quantum-Monte-Carlo simulations with results from exact and stochastic diagonalizations. We find good agreement for the ground state energy and superconducting correlations for both, the repulsive and attractive Hubbard model. Special emphasis lies on the superconducting correlations in the repulsive Hubbard model, where the small magnitude of the values obtained by Monte-Carlo simulations gives rise to the question, whether these results might be caused by fluctuations or systematic errors of the method. Although we notice that the Quantum-Monte-Carlo method has convergence problems for large interactions, coinciding with a minus sign problem, we confirm the results of the diagonalization techniques for small and moderate interaction strengths. Additionally we investigate the numerical stability and the convergence of the Quantum-Monte-Carlo method in the attractive case, to study the influence of the minus sign problem on convergence. Also here in the absence of a minus sign problem we encounter convergence problems for strong interactions.
机译:在本文中,我们将通过量子-蒙特卡洛模拟获得的哈伯德模型基态的数值结果与精确和随机对角化的结果进行比较。我们发现排斥和有吸引力的哈伯德模型对于基态能量和超导相关性都具有良好的一致性。特别强调的是斥力Hubbard模型中的超导相关性,在该模型中,通过蒙特卡洛模拟获得的值的小幅值引起了一个问题,这些结果可能是由方法的波动还是系统误差引起的。尽管我们注意到Quantum-Monte-Carlo方法对于大的相互作用具有收敛性问题,同时也与负号问题相吻合,但我们确认了对角化技术在中小相互作用强度下的结果。另外,我们研究了在有吸引力的情况下量子蒙特卡罗方法的数值稳定性和收敛性,以研究负号问题对收敛性的影响。同样在这里,在没有减号问题的情况下,我们会遇到强相互作用的收敛问题。

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