Numerical Renormalization Group calculations of the magnetization of isotropic and anisotropic Kondo impurities
arXiv:1212.5007 · doi:10.1103/PhysRevB.87.184408
Abstract
We study a Kondo impurity model with additional uniaxial anisotropy D in a non-zero magnetic field B using the Numerical Renormalization Group (NRG). The ratio g_e/g_S of electron and impurity g-factor is regarded as a free parameter and, in particular, the special cases of a "local" (g_e=0) and "bulk" (g_e=g_S) field are considered. For a bulk field, the relationship between the impurity magnetization M and the impurity contribution to the magnetization M_imp is investigated. Furthermore, we study how the value of g_e affects the impurity magnetization curves. In case of an isotropic impurity with g_e=g_S, it is demonstrated that at zero temperature M(B), unlike M_imp(B), does not display universal behavior. With additional "easy axis" anisotropy, the impurity magnetization is well described by a shifted and rescaled Brillouin function on energy scales that are small compared to |D|. In case of "hard axis" anisotropy, the magnetization curves can feature steps which are due to field-induced pseudo-spin-1/2 Kondo effects. For large anisotropy and a local field, these screening effects are described by an anisotropic spin-1/2 Kondo model with an additional scattering term that is spin-dependent (in contrast to ordinary potential scattering). Our study is motivated by the question how the magnetic properties of a deposited magnetic molecule are modified by the interaction with a non-magnetic metallic surface.
26 pages, 18 figures
References in corpus (15)
- The numerical renormalization group method for quantum impurity systems
- Real-time dynamics in Quantum Impurity Systems: A Time-dependent Numerical Renormalization Group Approach
- Energy resolution and discretization artefacts in the numerical renormalization group
- Spin Precession and Real Time Dynamics in the Kondo Model: A Time-Dependent Numerical Renormalization-Group Study
- Kondo-transport spectroscopy of single molecule magnets
- Properties of anisotropic magnetic impurities on surfaces
- Relaxation vs decoherence: Spin and current dynamics in the anisotropic Kondo model at finite bias and magnetic field
- Real-Time Dynamics in Quantum Impurity Models with Diagrammatic Monte Carlo
- Splitting of the Kondo resonance in anisotropic magnetic impurities on surfaces
- Many-particle effects in adsorbed magnetic atoms with easy-axis anisotropy: the case of Fe on CuN/Cu(100) surface
- Adaptive logarithmic discretization for numerical renormalization group methods
- Full density matrix numerical renormalization group calculation of impurity susceptibility and specific heat of the Anderson impurity model
- Magnetic field effects in few-level quantum dots: theory, and application to experiment
- Non-equilibrium magnetization dynamics of ferromagnetically coupled Kondo spins
- Interaction quench dynamics in the Kondo model in presence of a local magnetic field
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