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Finite-temperature phase transitions in quasi-one-dimensional molecular conductors

机译:准一维分子导体中的有限温度相变

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Phase transitions in 1/4-filled quasi-one-dimensional molecular conductors are studied theoretically on the basis of extended Hubbard chains including electron-lattice interactions coupled by interchain Coulomb repulsion. We apply the numerical qudantum transfer-matrix method to an effective onedimensional model, treating the interchain term within mean-field approximation. Finite-temperature properties are investigated for the charge ordering, the "dimer Mott" transition (bond dimerization), and the spin-Peierls transition (bond tetramerization). A coexistent state of charge order and bond dimerization exhibiting dielectricity is predicted in a certain parameter range, even when intrinsic dimerization is absent.
机译:理论上,基于扩展的哈伯链(包括通过链间库仑斥力耦合的电子-晶格相互作用)研究了填充1/4的准一维分子导体中的相变。我们将数值qudantum转移矩阵方法应用于有效的一维模型,在均值场近似内处理链间项。研究了电荷排序,“二聚体莫特”跃迁(键二聚)和自旋-Peierls跃迁(键四聚体)的有限温度特性。即使在不存在固有二聚化的情况下,也可以预测在一定的参数范围内呈现介电性的电荷顺序和键二聚化共存的状态。

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