Critical temperature for the two-dimensional attractive Hubbard Model
Thereza Paiva, Raimundo R. dos Santos, R. T. Scalettar, P. J. H. Denteneer
Abstract
The critical temperature for the attractive Hubbard model on a square lattice is determined from the analysis of two independent quantities, the helicity modulus, ρs, and the pairing correlation function, Ps. These quantities have been calculated through Quantum Monte Carlo simulations for lattices up to 18× 18, and for several densities, in the intermediate-coupling regime. Imposing the universal-jump condition for an accurately calculated ρs, together with thorough finite-size scaling analyses (in the spirit of the phenomenological renormalization group) of Ps, suggests that Tc is considerably higher than hitherto assumed.
Create a lesson
Related papers
Spacetime Dynamics of Altermagnetic Magnons
Ali Emami Kopaei, Karthik Subramaniam Eswaran, Krzysztof Wohlfeld
Engineering Weak Universality with Quantum Dots
Warre Missiaen, Michael Wimmer, Natalia Chepiga
Lyapunov-controlled thermalization: an exact real-time example
Jonas Loy, Jan C. Louw
Multiconfigurational Analysis of Local Electronic Structure of RuO2 Using Relativistic Embedded Clusters
Zhosan I. A., Lomachuk Yu. V., Maltsev D. A. et al.
Unconstrained compact lattice QED2+1 coupled to phonons: Gauss sectors, orthogonal semimetal, and deconfined criticality
João C. Inácio, Fakher F. Assaad
Collective Charge-\(2e\) Bosonic Excitations in Charge-Ordered Systems
Ping Tang