Selective Kondo screening and strange metallicity by sliding Dirac semimetals
arXiv:2504.06739 · doi:10.1103/fgq6-8f9c
Abstract
Kondo screening of local moments in normal metals typically leads to hybridized conduction and valence bands separated by a Kondo gap, resulting in an insulating state at half-band filling. We show a dramatic change of this scenario in a Dirac-semimetal-based correlated system -- a bilayer honeycomb lattice heterostructure where a local moment lattice is stacked on a Dirac semimetal breaking the inversion symmetry. This system is modeled by an extended Anderson honeycomb lattice involving the real-space dependence of major interlayer hybridization parameters on the relative sliding distance along the armchair direction. First, we unveil multiple Kondo scales and successive Kondo breakdown transitions in this correlated heterostructure under sliding. Second, we demonstrate the existence of a genuine selective Kondo screening phase which is stabilized near the A-B stack pattern and is accessible by applying interlayer voltage. Third, we find a nearly flat hybridized band located concomitantly within the Kondo gap, resulting in an unprecedented metallic state at half-band filling. This unconventional heavy fermion state is characterized by violation of Luttinger theorem and appearance of a Van Hove singularity at the Fermi energy. The general sliding-driven band structure landscape and the implications of our results for the broad context of multiorbital Kondo physics are briefly discussed.
21 pages, 18 figures (including 5 appendices)
References in corpus (28)
- The electronic properties of graphene
- Fermi-liquid instabilities at magnetic quantum phase transitions
- The electronic properties of bilayer graphene
- Heavy Fermions and Quantum Phase Transitions
- Moiré heterostructures as a condensed matter quantum simulator
- Quantum anomalous Hall effect from intertwined moiré bands
- Weak magnetism and non-Fermi liquids near heavy-fermion critical points
- Fractionalized Fermi liquids
- MATBG as Topological Heavy Fermion: I. Exact Mapping and Correlated Insulators
- Frustration and the Kondo effect in heavy fermion materials
- Orthogonality catastrophe and Kondo effect in graphene
- Flat bands, strange metals, and the Kondo effect
- Tuning Kondo physics in Graphene with gate voltage
- Gate-tunable heavy fermions in a moiré Kondo lattice
- Commensurate-incommensurate phase transition in bilayer graphene
- Kondo Breakdown as a Selective Mott Transition in the Anderson Lattice
- Orbital-selective Mott transitions: Heavy fermions and beyond
- Theory of Scanning Tunneling Spectroscopy of Magnetic Adatoms in Graphene
- Upper-critical dimension in a quantum impurity model: Critical theory of the asymmetric pseudogap Kondo problem
- Is the Mott transition relevant to f-electron metals ?
- Chiral Kondo Lattice in Doped MoTe/WSe Bilayers
- Gate-tunable heavy fermion quantum criticality in a moiré Kondo lattice
- Coupled topological flat and wide bands: Quasiparticle formation and destruction
- Emergent flat band and topological Kondo semimetal driven by orbital-selective correlations
- Model of Quantum Criticality in He3 bilayers Adsorbed on graphite
- Orbital-selective Mott transition and heavy fermion behavior in a bilayer Hubbard model for 3He
- Kondo effect and its destruction in hetero-bilayer transition metal dichalcogenides
- Kondo screening and coherence in kagome local-moment metals: Energy scales of heavy fermions in the presence of flat bands