论文标题

在强磁场中的近代筛选阶段的量子振荡

Quantum oscillations of Kondo screening phases in strong magnetic fields

论文作者

Chou, Po-Hao, Chung, Chung-Hou, Mou, Chung-Yu

论文摘要

我们概括了在数值重新归一化方法中采用的迭代对角线化程序,以分析强磁场中的近藤效应,在强磁场中,在化学电位上的行程电子的状态密度随着磁场的变化而不断变化。我们首先在存在单个杂质的情况下检查多体基态的阶段。通过研究$ z $ - 组成的总自旋,$ΔS_z$以及杂质和传导电子之间的自旋旋转相关性的变化,我们发现当存在Zeeman分裂时,有三个州争夺基态。其中一个状态是双重杂质旋转的双线。其他两个状态是$ΔS_Z= 1/2 $和$ΔS_Z= 1 $的近藤筛选状态,其中杂质旋转部分被部分筛选并完全筛选。对于在强磁场中具有两种冲击力的近托系统,我们发现由于兰道水平引起的近托筛选效果,rkky相互作用和量子振荡之间的相互作用决定了系统的基态。这三个因素的组合导致不同阶段的不同筛查场景,在不同的阶段中,两种杂质的旋转可以形成SPIN-0或SPIN-1状态,而这些阶段中的杂质旋转可以通过传导电子筛选,部分筛选或未筛选。这些竞争状态的基态的出现会随磁场,化学电位或冲突间距离的变化而振荡。这导致磁化和电导率中的量子振荡。特别是,我们发现纵向电导率中的额外峰结构反映了近代筛选阶段的变化,并且是实验中要观察到的重要特征。我们的结果为强磁场中的近藤效应提供了完全表征。

We generalize the iterative diagonalization procedure adopted in method of numerical renormalization group to analyze the Kondo effect in strong magnetic fields, where the density of states for itinerary electrons at the chemical potential varies discontinuously as the magnetic field changes. We first examine phases of many-body ground states in the presence of single impurity. By investigating change of $z$-component of total spin, $ΔS_z$, and spin-spin correlation between the impurity and conduction electrons, we find that there are three states competing for the ground state when Zeeman splitting is present. One of the states is doublet in which the impurity spin is unscreened. The other two states are Kondo screening states with $ΔS_z=1/2$ and $ΔS_z=1$, in which the impurity spin is partially screened and completely screened respectively. For Kondo systems with two-impurities in strong magnetic fields, we find that the interplay between the Kondo screening effect, RKKY interaction, and quantum oscillations due to Landau levels determines the ground state of the system. Combination of these three factors results in different screening scenarios for different phases in which spins of two impurities can form spin-0 or spin-1 states, while impurity spins in these phases can be either screened, partially screened, or unscreened by conduction electrons. The emergence of the ground state from these competing states oscillates with the change of magnetic field, chemical potential or inter-impurity distance. This leads to quantum oscillations in magnetization and conductivity. In particular, we find extra peak structures in longitudinal conductivity that reflect changes of Kondo screening phases and are important features to be observed in experiments. Our results provide a complete characterization of phases for Kondo effect in strong magnetic fields.

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