Strongly Correlated Electrons · Physics
From Luttinger liquid to Mott insulator: the correct low-energy description of the one-dimensional Hubbard model by an unbiased variational approach
Manuela Capello, Federico Becca, Seiji Yunoki, Michele Fabrizio +1
2009-11-11
Computational Physics · Physics
Framework for constructing generic Jastrow correlation factors
Pablo Lopez Rios, Priyanka Seth, Neil D Drummond, Richard J Needs
2015-06-05
Materials Science · Physics
An inhomogeneous and anisotropic Jastrow function for non-uniform many-electron systems
A. Garcia-Lekue, M. Nekovee, J. M. Pitarke, R. Gaudoin
2007-05-23
Strongly Correlated Electrons · Physics
Variational description of Mott insulators
Manuela Capello, Federico Becca, Michele Fabrizio, Sandro Sorella +1
2009-11-10
Strongly Correlated Electrons · Physics
Spontaneous symmetry breaking in correlated wave functions
Ryui Kaneko, Luca F. Tocchio, Roser Valentí, Federico Becca +1
2016-03-22
Computational Physics · Physics
Jastrow correlation factor for atoms, molecules, and solids
N. D. Drummond, M. D. Towler, R. J. Needs
2008-01-03
Strongly Correlated Electrons · Physics
Dynamical structure factor of the $J_1-J_2$ Heisenberg model in one dimension: the variational Monte Carlo approach
Francesco Ferrari, Alberto Parola, Sandro Sorella, Federico Becca
2018-06-13
Chemical Physics · Physics
Deterministic Optimisation of Jastrow Factors
Maria-Andreea Filip, Evelin M. C. Christlmaier, J. Philip Haupt, Daniel Kats +2
2025-06-06
Strongly Correlated Electrons · Physics
Finite compressibility in the low-doping region of the two-dimensional $t{-}J$ model
Massimo Lugas, Leonardo Spanu, Federico Becca, Sandro Sorella
2009-11-11
Strongly Correlated Electrons · Physics
Improved Multi-Variable Variational Monte Carlo Method Examined by High-Precision Calculations of One-Dimensional Hubbard Model
Ryui Kaneko, Satoshi Morita, Masatoshi Imada
2013-08-13