Dual Nature of Magnetism Driven by Momentum Dependent f-d Kondo Hybridization
arXiv:2305.08003
Abstract
Intricate nature of magnetism in uranium-based Kondo lattices is a consequence of correlations between U-5 and conduction electrons. Using linearized quasiparticle self-consistent GW plus dynamical mean-field theory, we demonstrate a crossover from incoherent to coherent - Kondo cloud in the paramagnetic phase of UTe with reduced volumes, USbTe and USbSe. As the transition occurs, we observe an augmented - coherence and Pauli-like magnetic susceptibility, with a substantial frozen magnetic moment of U-5 persisting. We show that momentum dependent - hybridization is responsible for the magnetic moments arising from the renormalized electrons' van Hove singularity. Our findings provide a unique perspective to explain the dual nature of magnetism and the long-range magnetic ordering induced by pressure in UTe.