Importance of subleading corrections for the Mott critical point
arXiv:1110.6195 · doi:10.1103/PhysRevB.85.201101
Abstract
The interaction-induced metal-insulator transition should be in the Ising universality class. Experiments on layered organic superconductors suggest that the observed critical endpoint of the first-order Mott transition belongs instead to a different universality class. To address this question, we use dynamical mean-field theory and a cluster generalization that is necessary to account for short-range spatial correlations in two dimensions. Such calculations can give information on crossover effects, in particular quantum ones, that are not included in the simplest mean-field. In the cluster calculation, a canonical transformation that minimizes the sign problem in continuous-time quantum Monte Carlo calculations allows us to obtain very accurate results for double occupancy. These results show that there are important subleading corrections that can lead to apparent exponents that are different from mean-field. Experiments on optical lattices could verify our predictions.
5 pages, 3 figures, latex
References in corpus (14)
- Continuous-time Monte Carlo methods for quantum impurity models
- The ALPS project release 1.3: open source software for strongly correlated systems
- Quantum Monte Carlo Impurity Solver for Cluster DMFT and Electronic Structure Calculations in Adjustable Base
- Hybridization expansion impurity solver: General formulation and application to Kondo lattice and two-orbital models
- Unconventional critical behaviour in a quasi-two-dimensional organic conductor
- Mott Transition, Antiferromagnetism, and d-wave Superconductivity in Two-Dimensional Organic Conductors
- Evolution of electronic structure of doped Mott insulators - reconstruction of poles and zeros of Green's function
- Strongly Correlated Superconductivity: a plaquette Dynamical mean field theory study
- Finite doping signatures of the Mott transition in the two-dimensional Hubbard model
- Finite temperature Mott transition in Hubbard model on anisotropic triangular lattice
- Universality Classes of Metal-Insulator Transitions in Strongly Correlated Electron Systems and Mechanism of High-Temperature Superconductivity
- Scaling theory of the Mott transition and breakdown of the Grüneisen scaling near a finite-temperature critical end point
- Universality of liquid-gas Mott transitions at finite temperatures
- Charge and spin criticality for the continuous Mott transition in a two-dimensional organic conductor
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