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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Influence of applied electric and magnetic fields on a thermally-induced reentrance of a coupled spin-electron model on a decorated square lattice
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Influence of applied electric and magnetic fields on a thermally-induced reentrance of a coupled spin-electron model on a decorated square lattice

机译:施加电场对装饰方格的耦合旋转电子模型的热诱导反射的影响

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摘要

The combination of an exact and Corner Transfer Matrix Renormalization Group (CTMRG) methods is used to study an influence of external electric and magnetic fields on existence of intriguing reentrant magnetic transitions in a coupled spin-electron model on a decorated square lattice. The two-dimensional (2D) decorated square lattice with localized nodal spins and delocalized electrons is taken into account. It was found that the competition among all involved interactions (the electron hopping, spin-spin and spin-electron interaction, external electric and magnetic fields) in combination with thermal fluctuations can produce new type of reentrant magnetic transitions. Depending on the model parameters the non-zero fields can stabilize or destabilize magnetic reentrance. In addition, an alternative and more effective way, for modulating the magnetic reentrance is found. An origin of intriguing low-temperature round maximum in the specific heat was explained as a consequence of rapid changes in the sublattice magnetizations, which is induced through a competition of all presented interactions.
机译:精确和转角转移矩阵重新定位组(CTMRG)方法的组合用于研究外部电场和磁场对装饰方格的耦合旋转电子模型中的有趣重圈磁转变的影响。考虑二维(2D)装饰方形晶格和局部节点旋转和分层电子。结果发现,所有参与相互作用(电子跳跃,自旋和旋转电子相互作用,外部电场和磁场)与热波动组合的竞争可以产生新型的倒退磁性转变。根据型号参数,非零字段可以稳定或稳定磁力回应。另外,找到用于调制磁力回应的替代和更有效的方法。由于Sublattice磁化的快速变化,解释了在特定热量中有趣的低温圆形最大值的起源,这通过所有呈现的相互作用的竞争引起的。

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