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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Dimerization-induced enhancement of the spin gap in the quarter-filled two-leg rectangular ladder
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Dimerization-induced enhancement of the spin gap in the quarter-filled two-leg rectangular ladder

机译:四分之一填充的两腿矩形梯子中由二聚作用引起的自旋间隙的增强

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摘要

We report density-matrix renormalization group calculations of spin gaps in the quarter-filled correlated two-leg rectangular ladder with bond-dimerization along the legs of the ladder. In the small rung-coupling region, dimerization along the leg bonds can lead to large enhancement of the spin gap. Electron-electron interactions further enhance the spin gap, which is nonzero for all values of the rung electron hopping and for arbitrarily small bond-dimerization. Very large spin gaps, as are found experimentally in quarter-filled band organic charge-transfer solids with coupled pairs of quasi-one-dimensional stacks, however, occur within the model only for large dimerization and rung electron hopping that are nearly equal to the hopping along the legs. Coexistence of charge order and spin gap is also possible within the model for not too large intersite Coulomb interactions.
机译:我们报告密度矩阵重新归一化组计算在四分之一填充的相关两腿矩形梯子中的自旋间隙,并沿着梯子的腿进行键二聚化。在小的梯级耦合区域中,沿着腿键的二聚化可导致自旋间隙的大幅增强。电子-电子相互作用进一步增强了自旋间隙,该自旋间隙对于梯级电子跳跃的所有值以及任意小的键二聚化而言都不为零。在带有四对耦合的准一维堆栈的四分之一能带有机电荷转移固体中,实验发现非常大的自旋间隙,但仅在模型中出现,对于大二聚化和梯级电子跳跃几乎等于自旋间隙。沿着腿跳。对于不太大的站点间库仑相互作用,在模型内电荷序和自旋间隙的共存也是可能的。

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