Fermi surface and antiferromagnetism in the Kondo lattice: an asymptotically exact solution in d>1 Dimensions
Seiji J. Yamamoto, Qimiao Si
Abstract
Interest in the heavy fermion metals has motivated us to examine the quantum phases and their Fermi surfaces within the Kondo lattice model. We demonstrate that the model is soluble asymptotically exactly in any dimension d>1, when the Kondo coupling is small compared with the RKKY interaction and in the presence of antiferromagnetic ordering. We show that the Kondo coupling is exactly marginal in the renormalization group sense, establishing the stability of an ordered phase with a small Fermi surface, AFs. Our results have implications for the global phase diagram of the heavy fermion metals, suggesting a Lifshitz transition inside the antiferromagnetic region and providing a new perspective for a Kondo-destroying antiferromagnetic quantum critical point.
Create a lesson
Related papers
Bound states, resonances, and their thermodynamic properties in pseudospin-1 systems with short-range impurities
E. V. Gorbar, Pavlo Sukhachov
Engineering tunable p-wave magnetism in antiferromagnetic bilayers
Yu-Han Lin, Jin-Wei Dong, Ziqiang Wang et al.
Higher-Winding Fractionalization
Kishore Iyer, Christophe Mora, Daniele Guerci
Green-function Zeros Encode Competing Mott and Charge-ordering Scales
Peizhi Mai, Philip W. Phillips
Chiral Color Ice: Exact Local Handedness Constraints and Möbius Zero Modes in Frustrated Magnets
Péter Kránitz, Yasir Iqbal, Karlo Penc
Pseudospin Dynamics of Charge Order
Ping Tang