Quantum oscillations of Kondo screening phases in strong magnetic fields
Po-Hao Chou, Chung-Hou Chung, and Chung-Yu Mou

TL;DR
This paper extends numerical methods to analyze the Kondo effect in strong magnetic fields, revealing multiple competing ground states, quantum oscillations, and new features in conductivity related to Kondo screening phases.
Contribution
It introduces a generalized iterative diagonalization method to study Kondo effects under strong magnetic fields, uncovering complex phase behavior and oscillations.
Findings
Identification of three competing ground states with different spin screening
Discovery of quantum oscillations in magnetization and conductivity
Observation of extra peaks in longitudinal conductivity related to Kondo phases
Abstract
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 -component of total spin, , 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 and , in which the impurity spin is partially screened and completely screened respectively. For Kondo systems with…
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Taxonomy
TopicsQuantum and electron transport phenomena · Physics of Superconductivity and Magnetism · Advanced Chemical Physics Studies
