Tomski Andrzej, Kaczmarczyk Jan
Marian Smoluchowski Institute of Physics, Jagiellonian University, ulica Łojasiewicza 11, PL-30-348 Kraków, Poland. Faculty of Mathematics and Computer Science, Jagiellonian University, ulica Łojasiewicza 6, PL-30-348 Kraków, Poland.
J Phys Condens Matter. 2016 May 5;28(17):175701. doi: 10.1088/0953-8984/28/17/175701. Epub 2016 Mar 29.
We study the superconducting phase of the Hubbard model using the Gutzwiller variational wave function (GWF) and the recently proposed diagrammatic expansion technique (DE-GWF). The DE-GWF method works on the level of the full GWF and in the thermodynamic limit. Here, we consider a finite-size system to study the accuracy of the results as a function of the system size (which is practically unrestricted). We show that the finite-size scaling used, e.g. in the variational Monte Carlo method can lead to significant, uncontrolled errors. The presented research is the first step towards applying the DE-GWF method in studies of inhomogeneous situations, including systems with impurities, defects, inhomogeneous phases, or disorder.
我们使用古兹维勒变分波函数(GWF)和最近提出的图解展开技术(DE-GWF)来研究哈伯德模型的超导相。DE-GWF方法在全GWF层面以及热力学极限下适用。在此,我们考虑一个有限尺寸系统,以研究结果的准确性作为系统尺寸的函数(实际上不受限制)。我们表明,例如在变分蒙特卡罗方法中使用的有限尺寸标度可能会导致显著的、无法控制的误差。本研究是将DE-GWF方法应用于非均匀情况研究的第一步,这些情况包括含有杂质、缺陷、非均匀相或无序的系统。