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Quasiparticle properties of strongly correlated electron systems with itinerant metamagnetic behavior

机译:具有巡回亚磁行为的强相关电子系统的准粒子性质

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摘要

A brief account of the zero temperature magnetic response of a system of strongly correlated electrons in strong magnetic field is given in terms of its quasiparticle properties. The scenario is based on the paramagnetic phase of the half-filled Hubbard model, and the calculations are carried out with the dynamical mean field theory (DMFT) together with the numerical renormalization group (NRG). As well known, in a certain parameter regime one finds a magnetic susceptibility which increases with the field strength. Here, we analyze this metamagnetic response based on Fermi liquid parameters, which can be calculated within the DMFT-NRG procedure. The results indicate that the metamagnetic response can be driven by field-induced effective mass enhancement. However, also the contribution due to quasiparticle interactions can play a significant role. We put our results in context with experimental studies of itinerant metamagnetic materials.
机译:根据其准粒子性质,简要说明了强磁场中强相关电子系统的零温度磁响应。该方案基于半填充Hubbard模型的顺磁相,并使用动力学平均场论(DMFT)和数值归一化组(NRG)进行计算。众所周知,在某一参数范围内,人们发现磁化率随场强而增加。在这里,我们根据费米液体参数分析这种亚磁响应,该参数可以在DMFT-NRG程序中进行计算。结果表明,超磁响应可以由磁场诱导的有效质量增强来驱动。但是,由于准粒子相互作用而产生的贡献也可以起重要作用。我们将结果与流动性超磁性材料的实验研究结合起来。

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