Publications
Diffuse interface model of volume nucleation in glasses,
, Thermochimica Acta, Volume 267, p.1-18, (1995)
Heterogeneous nucleation of/on nanoparticles: a density functional study using the phase-field crystal model,
, Chemical Society Reviews, Volume 43, Issue 7, p.2159-2173, (2014)
Solid-liquid interfacial free energy,
, Materials Science and Engineering A-Structural Materials Properties Microstrucure and Processing, Volume 133, p.577-580, (1991)
Phase-field crystal modeling of nucleation including homogeneous and heterogeneous processes, and growth front nucleation,
, Collection of Extended Abstracts, Frontiers in Solidification, TMS Annual Meeting, eds. W. Kurz, J. Dantzig, A. Karma, J. Hoyt (EPFL, Lausanne, Switzerland), p.23-26, (2016)
Phase selection and transformation kinetics in KC60,
, Physical Review B Condensed Matter and Materials Physics, Volume 54, p.11865-11868, (1996)
Nucleation and spinodal decompositionStructure development in condensed matter,
, p.67-106, (1997)
Phase field theory of crystal nucleation in hard sphere liquid,
, Journal of Chemical Physics, Volume 119, p.10376-10382, (2003)
Quantitative analysis of the classical nucleation theory on glass forming alloys,
, Journal of Non-Crystalline Solids, Volume 156-158, p.514-518, (1993)
Phase-Field Modeling of Polycrystalline Solidification: From Needle Crystals to Spherulites-A Review,
, Metallurgical and Materials Transactions A, Volume 45, Issue 4, p.1694-1719, (2014)
Modelling polycrystalline solidification using phase field theory,
, Journal of Physics-Condensed Matter, Volume 16, Issue 41, p.R1205-R1235, (2004)
Phase-field crystal modelling of crystal nucleation, heteroepitaxy and patterning,
, Philosophical Magazine, Volume 91, Issue 1, p.123-149, (2011)
Cahn-Hilliard theory with triple-parabolic free energy: II. Nucleation, growth in the presence of a metastable crystalline phase,
, Journal of Chemical Physics, Volume 112, p.2410-2419, (2000)
Polikristályos megszilárdulás térelméleti modellezése (Field theoretic modeling of polycrystalline solidification),
, Fizikai Szemle, Volume 55, p.203-211, (2005)
Diffuse interface approach to crystal nucleation,
, Materials Science Forum, Volume 215-216, p.451-458, (1996)
Crystal nucleation and growth in binary phase-field theory,
, Journal of Crystal Growth, Volume 237-239, p.1813-1817, (2002)
Polycrystalline patterns in far-from-equilibrium freezing: a phase field study,
, Philosophical Magazine, Volume 86, p.3757-3778, (2006)
Nucleation: free energy of small clusters,
, International Journal of Non-Equilibrium Processing, Volume 11, p.113-139, (1998)
Comparison of the local environments of 57Fe in amorphous and crystalline (Ni-Fe)B alloys,
, Application of The Mössbauer Effect, p.1307-1311, (1985)
Nucleation theory for diffuse interfaces,
, Materials Science and Engineering A-Structural Materials Properties Microstrucure and Processing, Volume 178, p.121-124, (1994)
Diffuse interface approach to crystal nucleation in glasses,
, Journal of Non-Crystalline Solids, Volume 192-193, p.470-473, (1995)
Semiempirical Cahn-Hilliard theory of vapor condensation with triple parabolic free energy.,
, Aip Conference Proceedings, Volume 534, p.245-248, (2000)
Simulation of the dendritic solidification during single roller quenching,
, Materials Science Forum, Volume 77, p.211-218, (1991)
Fundamentals of the diffuse interface theory,
, Journal of Physical Chemistry Us, Volume 100, p.10768-10770, (1996)
The influence of thermal history on the physical properties of metallic glasses,
, Proceedings of The Conference On Metallic Glasses : Science and Technology, p.197-202, (1981)
Diffuse interface model of crystal nucleation,
, Journal of Non-Crystalline Solids, Volume 219, p.49-56, (1997)
Growth of 'dizzy dendrites' in a random field of foreign particles,
, Nature Materials, Volume 2, p.92-96, (2003)
Homogeneous nucleation within the liquid miscibility gap of Zn-Pb alloys,
, Scripta Metallurgica Et Materialia, Volume 28, p.1329-1334, (1993)
Phase-field modeling of crystal nucleation in undercooled liquids - A review,
, Progress in Materials Science, (2019)
A general mechanism of polycrystalline growth,
, Nature Materials, Volume 3, Issue 9, p.645-650, (2004)
Cahn-Hilliard theory with triple-parabolic free energy: I. Nucleation, growth of a stable crystalline phase,
, Journal of Chemical Physics, Volume 112, p.2399-2409, (2000)