Non Fermi liquid behavior and continuously tunable resistivity exponents in the Anderson-Hubbard model at finite temperature
arXiv:1702.05612 · doi:10.1103/PhysRevLett.119.086601
Abstract
We employ a recently developed computational many-body technique to study for the first time the half-filled Anderson-Hubbard model at finite temperature and arbitrary correlation () and disorder () strengths. Interestingly, the narrow zero temperature metallic range induced by disorder from the Mott insulator expands with increasing temperature in a manner resembling a quantum critical point. Our study of the resistivity temperature scaling for this metal reveals non Fermi liquid characteristics. Moreover, a continuous dependence of on and from linear to nearly quadratic was observed. We argue that these exotic results arise from a systematic change with and of the "effective" disorder, a combination of quenched disorder and intrinsic localized spins.
References in corpus (18)
- Metal-insulator transition in two-dimensional electron systems
- How bad metals turn good: spectroscopic signatures of resilient quasiparticles
- Disorder-Driven Non-Fermi Liquid Behavior of Correlated Electrons
- Competition between Anderson localization and antiferromagnetism in correlated lattice fermion systems with disorder
- Dynamical Mean Field Study of the Two-Dimensional Disordered Hubbard Model
- Electronic Griffiths phase of the d=2 Mott transition
- Testing the Monte Carlo - Mean Field approximation in the one-band Hubbard model
- Anderson localization effects near the Mott metal-insulator transition
- Parallelized Traveling Cluster Approximation to Study Numerically Spin-Fermion Models on Large Lattices
- Population imbalanced lattice fermions near the BCS-BEC crossover: II. The FFLO regime and its thermal signatures
- Population imbalanced lattice fermions near the BCS-BEC crossover: I.The breached pair and metastable FFLO phases
- Metal-Insulator-Transition in a Weakly interacting Disordered Electron System
- A local theory for Mott-Anderson localization
- Mott-Hubbard transition and spin-liquid state on the pyrochlore lattice
- Orbital Selective Directional Conductor in the Two Orbital Hubbard Model
- Disorder screening near the Mott-Anderson transition
- Spin-orbital liquids and insulator-metal transitions on the pyrochlore lattice
- Anomalous pseudogap in population imbalanced Fermi superfluids
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