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Physical Review Letters|July 13, 2004
Phase diagram of water from computer simulationE Sanz, C Vega, J L F Abascal, et al.The Journal of Chemical Physics|July 21, 2004
Tracing the phase diagram of the four-site water potential (TIP4P)E Sanz, C Vega, J L F Abascal, et al.The Journal of Chemical Physics|April 20, 2005
The melting temperature of the most common models of waterC Vega, E Sanz, J L F AbascalThe Journal of Chemical Physics|July 13, 2005
A potential model for the study of ices and amorphous water: TIP4P/IceJ L F Abascal, E Sanz, R García Fernández, et al.The Journal of Chemical Physics|May 17, 2011
Note: Equation of state and compressibility of supercooled water: simulations and experimentJ L F Abascal, C VegaThe Journal of Chemical Physics|October 22, 2005
Relation between the melting temperature and the temperature of maximum density for the most common models of waterC Vega, J L F AbascalThe Journal of Chemical Physics|January 6, 2006
A general purpose model for the condensed phases of water: TIP4P/2005J L F Abascal, C VegaPhysical Chemistry Chemical Physics : PCCP|October 18, 2014
Nucleation free-energy barriers with Hybrid Monte-Carlo/Umbrella SamplingM A Gonzalez, E Sanz, C McBride, et al.Journal of the American Chemical Society|September 10, 2013
Homogeneous ice nucleation at moderate supercooling from molecular simulationE Sanz, C Vega, J R Espinosa, et al.The Journal of Chemical Physics|July 23, 2004
Computer simulation study of the global phase behavior of linear rigid Lennard-Jones chain molecules: comparison with flexible modelsA Galindo, C Vega, E Sanz, et al.Pageof 49