Itinerant quantum critical point with frustration and non-Fermi-liquid
arXiv:1706.10004 · doi:10.1103/PhysRevB.98.045116
Abstract
Employing the self-learning quantum Monte Carlo algorithm, we investigate the frustrated transverse-field triangle-lattice Ising model coupled to a Fermi surface. Without fermions, the spin degrees of freedom undergoes a second-order quantum phase transition between paramagnetic and clock-ordered phases. This quantum critical point (QCP) has an emergent U(1) symmetry and thus belongs to the (2+1)D XY universality class. In the presence of fermions, spin fluctuations introduce effective interactions among fermions and distort the bare Fermi surface towards an interacting one with hot spots and Fermi pockets. Near the QCP, non-Fermi-liquid behavior are observed at the hot spots, and the QCP is rendered into a different universality with Hertz-Millis type exponents. The detailed properties of this QCP and possibly related experimental systems are also discussed.
9 pages, 8 figures
References in corpus (23)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Quantum phase transitions of metals in two spatial dimensions: II. Spin density wave order
- Are non-Fermi-liquids stable to Cooper pairing?
- Self-Learning Monte Carlo Method
- Superconductivity in the vicinity of antiferromagnetic order in CrAs
- Critical fermi surfaces and non-fermi liquid metals
- Superconductivity and non-Fermi liquid behavior near a nematic quantum critical point
- Pressure induced superconductivity on the border of magnetic order in MnP
- Recent Developments in Non-Fermi Liquid Theory
- Sign-problem-free quantum Monte Carlo of the onset of antiferromagnetism in metals
- Interplay of quantum and thermal fluctuations in a frustrated magnet
- Self-Learning Monte Carlo Method in Fermion Systems
- Self-learning Monte Carlo with Deep Neural Networks
- Self-Learning Determinantal Quantum Monte Carlo Method
- Non-Fermi-liquid at (2+1)d ferromagnetic quantum critical point
- Quantum critical properties of a metallic spin density wave transition
- Self-Learning Monte Carlo Method: Continuous-Time Algorithm
- Lifshitz Transition in the Two Dimensional Hubbard Model
- Unified phase diagram for iron-based superconductors
- Anisotropic Non-Fermi Liquids
- Temperature-field phase diagram of geometrically frustrated CePdAl
- Effect of nematic order on the low-energy spin fluctuations in detwinned BaFeNiAs
- Revealing a Triangular Lattice Ising Antiferromagnet in a Single-Crystal CeCdAs
Cited by in corpus (34)
- Sign-Problem-Free Fermionic Quantum Monte Carlo: Developments and Applications
- Monte Carlo Studies of Quantum Critical Metals
- Charge-Density-Wave Transitions of Dirac Fermions Coupled to Phonons
- Itinerant Quantum Critical Point with Fermion Pockets and Hot Spots
- Normal state properties of quantum critical metals at finite temperature
- Revealing Fermionic Quantum Criticality from New Monte Carlo Techniques
- Designer Monte Carlo Simulation for Gross-Neveu Transition
- Identification of non-Fermi liquid fermionic self-energy from quantum Monte Carlo data
- Yukawa-SYK model and Self-tuned Quantum Criticality
- A perspective on machine learning and data science for strongly correlated electron problems
- Generative models for sampling and phase transition indication in spin systems
- Self-learning Monte Carlo method with Behler-Parrinello neural networks
- Phase diagram of the spin-1/2 Yukawa-SYK model: Non-Fermi liquid, insulator, and superconductor
- Superconductivity vs quantum criticality: effects of thermal fluctuations
- Magnetism and charge order in the honeycomb lattice
- Fermi-surface reconstruction without symmetry breaking
- Policy Guided Monte Carlo: Reinforcement Learning Markov Chain Dynamics
- Hierarchy of energy scales in an O(3) symmetric antiferromagnetic quantum critical metal: a Monte Carlo study
- Electronic and phononic properties of a two dimensional electron gas coupled to dipolar phonons via small-momentum-transfer scattering
- EMUS-QMC: Elective Momentum Ultra-Size Quantum Monte Carlo Method
- Metal to Orthogonal Metal Transition
- Noncommutativity between the low-energy limit and integer dimension limits in the -expansion: a case study of the antiferromagnetic quantum critical metal
- Fermi-liquid ground state of interacting Dirac fermions in two dimensions
- Evolution of an attractive polarized Fermi gas: From a Fermi liquid of polarons to a non-Fermi liquid at the Fulde-Ferrell-Larkin-Ovchinnikov quantum critical point
- A Sport and a Pastime: Model Design and Computation in Quantum Many-Body Systems
- Network-Initialized Monte Carlo Based on Generative Neural Networks
- Observation of non-Fermi liquid physics in a quantum critical metal via quantum loop topography
- Probing a Bose Metal via Electrons: Inescapable non-Fermi liquid scattering and pseudogap physics
- The extended Hubbard model on a honeycomb lattice
- Magnetic impurities in a charge-ordered background
- Interplay of itinerant electrons and Ising moments in a hybrid honeycomb quantum magnet TmNiAl
- Antiferromagnetic and bond-order-wave phases in the half-filled two-dimensional optical Su-Schrieffer-Heeger-Hubbard model
- Spin-orbit coupled periodic Anderson model: Kondo-Dirac semimetal and orbital-selective antiferromagnetic semimetal
- Strange metal and Fermi arcs from disordering spin stripes