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首页> 外文期刊>Physical Review, B. Condensed Matter >Mott metal-insulator transition in the half-filled Hubbard model on the triangular lattice - art. no. 085104
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Mott metal-insulator transition in the half-filled Hubbard model on the triangular lattice - art. no. 085104

机译:三角形晶格上半填充Hubbard模型中的Mott金属-绝缘体过渡-艺术。没有。 085104

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摘要

We investigate the metal-insulator transition in the half-filled Hubbard model on the two-dimensional triangular lattice using both the Kotliar-Ruckenstein slave-boson technique and an exact numerical diagonalization of finite clusters. Contrary to the case of a square lattice, where a perfect nesting of the Fermi surface leads to a metal-insulator transition at arbitrarily small values of U, always accompanied by antiferromagnetic ordering, on a triangular lattice, due to the lack of perfect nesting, the transition takes place at a finite value of U, and frustration induces a nontrivial competition among different magnetic phases. Indeed, within the mean-field approximation in the slave-boson approach, as the interaction grows the paramagnetic metal turns into a metallic phase with incommensurate spiral ordering. Increasing the interaction further, a linear spin density wave is stabilized, and finally for strong coupling the latter phase undergoes a first-order transition toward an antiferromagnetic insulator. No trace of the intermediate phases is seen in the exact diagonalization results, indicating a transition between a paramagnetic metal and an antiferromagnetic insulator. [References: 29]
机译:我们使用Kotliar-Ruckenstein从玻色子技术和有限簇的精确数值对角化技术,研究了二维三角晶格上半填充Hubbard模型中的金属-绝缘体转变。与方格的情况相反,费米表面的完美嵌套会导致在任意小的U值处出现金属-绝缘体过渡,由于缺乏完美的嵌套,在三角形格上总是伴随着反铁磁有序,跃迁在U的有限值处发生,而挫折感会引起不同磁相之间的非平凡竞争。实际上,在从玻色子方法的平均场近似中,随着相互作用的增长,顺磁性金属变成螺旋相序不适当的金属相。进一步增加相互作用,使线性自旋密度波稳定下来,最后为了进行强耦合,后一相经历了向反铁磁绝缘子的一阶跃迁。在精确的对角化结果中看不到中间相的痕迹,表明顺磁性金属和反铁磁性绝缘体之间发生了过渡。 [参考:29]

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