Numerical signatures of ultra-local criticality in a one dimensional Kondo lattice model
arXiv:2306.09402 · doi:10.21468/SciPostPhys.17.2.034
Abstract
Heavy fermion criticality has been a long-standing problem in condensed matter physics. Here we study a one-dimensional Kondo lattice model through numerical simulation and observe signatures of local criticality. We vary the Kondo coupling at fixed doping . At large positive , we confirm the expected conventional Luttinger liquid phase with (in units of ), an analogue of the heavy Fermi liquid (HFL) in the higher dimension. In the side, our simulation finds the existence of a fractional Luttinger liquid (LL*) phase with , accompanied by a gapless spin mode originating from localized spin moments, which serves as an analogue of the fractional Fermi liquid (FL*) phase in higher dimensions. The LL* phase becomes unstable and transitions to a spin-gapped Luther-Emery (LE) liquid phase at small positive . Then we mainly focus on the `critical regime' between the LE phase and the LL phase. Approaching the critical point from the spin-gapped LE phase, we often find that the spin gap vanishes continuously, while the spin-spin correlation length in real space stays finite and small. For a certain range of doping, in a point (or narrow region) of , the dynamical spin structure factor obtained through the time-evolving block decimation (TEBD) simulation shows dispersion-less spin fluctuations in a finite range of momentum space above a small energy scale (around ) that is limited by the TEBD accuracy. All of these results are unexpected for a regular gapless phase (or critical point) described by conformal field theory (CFT). Instead, they are more consistent with exotic ultra-local criticality with an infinite dynamical exponent . Lastly, we propose to simulate the model in a bilayer optical lattice with a potential difference.
23 pages, 27 figures
References in corpus (16)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Quantum Criticality in Heavy Fermion Metals
- Quantum criticality
- Heavy Fermions and Quantum Phase Transitions
- Weak magnetism and non-Fermi liquids near heavy-fermion critical points
- Fractionalized Fermi liquids
- Competing magnetic orders in a bilayer Hubbard model with ultracold atoms
- Pair Density Wave correlations in the Kondo-Heisenberg Model
- Quantum phase transitions out of the heavy Fermi liquid
- From the pseudogap metal to the Fermi liquid using ancilla qubits
- Deconfined criticality and ghost Fermi surfaces at the onset of antiferromagnetism in a metal
- Pair-density-wave superconductor from doping Haldane chain and rung-singlet ladder
- Topological Pair-Density-Wave Superconducting States
- Pristine quantum criticality in a Kondo semimetal
- Matrix Product Study of Spin Fractionalization in the 1D Kondo Insulator
- Fractional Fermi liquid in a generalized model