arXiv · 2312.15936
Numerical Renormalization Group Study of Quadrupole Kondo Effect with the Crystal-field Excited State
Abstract
We have studied the quadrupolar Kondo effect for an impurity in cubic environment with taking account of a singlet excited state $Γ_1$, which models a $\mathrm{Pr}^{3+}$ ion with a non-Kramers double ground state $Γ_3$. We have used the numerical renormalization group approach and determined the phase diagram with varying quadrupole Kondo coupling $J$ and $Γ_1$ excitation energy $Δ$. Two phases are found and identified as local Fermi liquid and non-Fermi liquid. This non-Fermi liquid phase is characteristic to the two-channel Kondo impurity, and a similar phase diagram has been also found in other extended quadrupole models. We have analyzed in detail the $J$-dependence of the Kondo temperature $T_K$ near the phase boundary $J_c (Δ) $ and found a nice scaling behavior with an stretched exponential form $T_K \sim δJ^α \exp (-\mathrm{const.}/\sqrt{δJ})$ where $δJ \equiv J - J_c (Δ)$. This differs from the standard scaling form and indicates that one needs to consider renormalization of multiple coupling constants.
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Yuki Kaneko, Hirokazu Tsunetsugu. 2024-02-02. Numerical Renormalization Group Study of Quadrupole Kondo Effect with the Crystal-field Excited State. https://doi.org/10.7566/jpsj.93.033705
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