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Coexistence of charge-density waves, bond-order waves, and spin-density waves in quasi-one-dimensional charge-transfer salts

机译:准一维电荷转移盐中电荷密度波,键序波和自旋密度波的共存

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Charge, spin, as well as lattice instabilities are investigated in isolated or weakly coupled chains of correlated electrons at quarter filling. Our analysis is based on extended Hubbard models including nearest-neighbor repulsion and Peierls coupling to lattice degrees of freedom. While treating the electronic quantum fluctuations exactly, the lattice structure is optimized self-consistently. We show that, generically, isolated chains undergo instabilities towards coexisting charge-density waves (CDW's) and bond order waves (BOW's) insulating spin-gapped phases. The spin and charge gaps of the BOW-CDW phase are computed. In the presence of an interchain magnetic coupling spin-density waves phases including a CDW or a BOW component are also found. Our results are discussed in the context of insulating charge-transfer salts. [References: 17]
机译:在四分之一填充时研究了相关电子的孤立或弱耦合链中的电荷,自旋以及晶格不稳定性。我们的分析基于扩展的Hubbard模型,包括最近邻排斥和Peierls耦合至晶格自由度。在精确处理电子量子涨落的同时,晶格结构也进行了自洽优化。我们表明,一般来讲,孤立的链会经历不稳定性,从而同时存在电荷密度波(CDW)和键序波(BOW)来隔离自旋间隙相。计算BOW-CDW相的自旋和电荷隙。在存在链间磁耦合自旋密度波的相中,还发现了包括CDW或BOW成分的相。我们的结果是在绝缘电荷转移盐的背景下讨论的。 [参考:17]

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