会议论文详细信息
International Conference on Condensed Matters and Advanced Materials 2018
Occupancy Fluctuation Effects on 3D Hubbard Model at Quarter Filling within Dynamical Mean-Field Theory
Tadjuddin, N.A.^1 ; Rangkuti, C.N.^1 ; Majidi, M.A.^1
Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Indonesia, Depok
16424, Indonesia^1
关键词: Computational costs;    Coulomb repulsions;    Density of state;    Dynamical mean-field theory;    Function matrixes;    Quarter filling;    Strong interaction;    Strongly correlated systems;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/515/1/012011/pdf
DOI  :  10.1088/1757-899X/515/1/012011
来源: IOP
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【 摘 要 】

Research on materials classified into strongly-correlated systems has become a crucial subject due to the strong interactions among the material constituents yielding various exotic physical properties and phenomena. There have been many computational methods developed to address the properties of such systems accurately within the Hubbard model, but most of them require a lot of computational costs to expect good results. In this research, we proposed a new approach within the Dynamical Mean Field Theory (DMFT) framework that requires a simpler and potentially less numerical-cost algorithm. We implemented this algorithm by constructing the local self-energy matrix elements that depend on the occupancy fluctuations. We integrated them over all possible occupancy configurations to obtain the fully interacting Green functions. The resulted Green function matrix was then used to compute the density of states (DOS) and other quantities. We investigated the case of quarter filling. Our computation results showed that pseudogap appeared when the onsite Coulomb repulsion was sufficiently high and tended to diminish as temperature increased. The system preserved its paramagnetic metallic character for all circumstances we studied.

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