Attila Szolnoki, György Szabó, and Matjaz Perc:
Phase diagrams for the spatial public goods game with pool punishment
Phys. Rev. E 83 (2011) 036101.
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György Szabó, Attila Szolnoki, Melinda Varga, and Livia Hanusovszky:
Ordeing in spatial evolutionary games for pairwise collective strategy updates
Phys. Rev. E 82 (2010) 026110.
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Dirk Helbing, Attila Szolnoki, Matjaz Perc, and György Szabó:
Punish, but not too hard: how costly punishment spreads in the spatial public goods games
New J. Phys. 12 (2010) 083005.
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György Szabó, Tania Tomé, and István Borsos:
Probability currents and entropy production in nonequilibrium lattice systems
Phys. Rev. E 82 (2010) 011105.
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Dirk Helbing, Attila Szolnoki, Matjaz Perc, and György Szabó:
Defector accelerated cooperativeness and punishment in public goods games with mutations
Phys. Rev. E 81 (2010) 056112.
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Dirk Helbing, Attila Szolnoki, Matjaz Perc, and György Szabó:
Evolutionary establishment of moral and double moral standards through spatial interactions
PLoS Comp. Biol. 6 (2010) e1000758.
(PDF)
Attila Szolnoki, Jeromos Vukov, and György Szabó:
Selection of noise level in strategy adoption for spatial social dilemmas
Phys. Rev. E 80 (2009) 056112.
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Attila Szolnoki, Matjaz Perc, and György Szabó:
Topology-independent impact of noise on cooperation in spatial public goods games
Phys. Rev. E 80 (2009) 056109.
(PDF)
Attila Szolnoki, Matjaz Perc, and György Szabó:
Phase diagrams for three-strategy evolutionary prisoner's dilemma games on regular graphs
Phys. Rev. E 80 (2009) 056104.
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M. Droz, J. Szwabinski, and G. Szabó:
Motion of influential players can support cooperation in Prisoner's Dilemma
Eur. Phys. J. B 71 (2009) 579-585.
(PDF)
Attila Szolnoki, Matjaz Perc, György Szabó, and Hans-Ulrich Stark:
Impact of aging on the evolution of cooperation in the spatial Prisoner's Dilemma game
Phys. Rev. E 80 (2009) 021901.
(PDF)
G. Szabó, A. Szolnoki and J. Vukov:
Selection of dynamical rules in spatial Prisoner's Dilemma games
EPL 87 (2009) 18007.
(PDF)
György Szabó and Attila Szolnoki:
Cooperation in spatial Prisoner's Dilemma games with two types of players for increasing number of neighbors
Phys. Rev. E 79 (2009) 016106.
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M. Perc, A. Szolnoki, and G. Szabó:
Restricted connections among distinguished players support cooperation
Phys. Rev. E 78 (2008) 066101.
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G. Szabó, A. Szolnoki, and I. Borsos:
Self-organizing patterns maintained by competing associations in a six-species predator-prey model
Phys. Rev. E 77 (2008) 041919.
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A. Szolnoki, M. Perc, and G. Szabó:
Diversity of reproduction rate supports cooperation in the prisoner's dilemma game on complex networks
Eur. Phys. J. B 61 (2008) 505-509.
J. Vukov, G. Szabó and A. Szolnoki:
Evolutionary Prisoner's Dilemma game on Newmann-Watts networks
Phys. Rev. E 77 (2008) 026109.
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G. Szabó and A. Szolnoki:
Phase transitions induced by variation of invasion rates in spatial cyclic predator-prey models with four or six species
Phys. Rev. E 77 (2008) 011906.
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G. Szabó, A. Szolnoki, and G. A. Sznaider:
Segregation process and phase transition in cyclic predator-prey models with an even number of species
Phys. Rev. E 76 (2007) 051921.
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Péter Szabó, Tamás Czárán, György Szabó:
Competing associations in bacterial warfare with two toxins
J. Theor. Biol. 248 (2007) 736-784.
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Beáta Oborny, György Szabó and Géza Meszéna:
Survival of species in patchy landscapes: percolation in space and time
In Ecological Reviews. Scaling Biodiversity, eds. D. Storch, P. A. Marquet, and J. H. Brown (Cambridge University Press, Cambridge, 2007) pp. 409-440
György Szabó and Gábor Fáth:
Evolutionary games on graphs
Phys. Rep. 446 (2007) 97-216.
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Matjaz Perc, Attila Szolnoki and György Szabó:
Cyclical interactions with alliance-specific heterogeneous invasion rates
Phys. Rev. E 75 (2007) 052102.
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Attila Szolnoki and György Szabó:
Cooperation enhanced by inhomogeneous activity of teaching for evolutionary Prisoner's Dilemma games
Europhys. Lett. 77 (2007) 30004.
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Jeromos Vukov, György Szabó, and Attila Szolnoki:
Cooperation in the noisy case: Prisoner's dilemma game on two types of regular random graphs
Phys. Rev. E 74 (2006) 067103.
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György Szabó, Jeromos Vukov and Attila Szolnoki:
Phase diagrams for an evolutionary prisoner's dilemma game on two-dimensional lattices
Phys. Rev. E 72 (2005) 047107.
PDF
György Szabó:
Competing associations in six-species predator-prey models
J. Phys. A: Math. Gen. 38 (2005) 6689-6702.
PDF
Christoph Hauert and György Szabó:
Game theory and physics
Am. J. Phys. 73 (2005) 405-414.
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Jeromos Vukov and György Szabó:
Evolutionary prisoner's dilemma game on hierarchical lattices
Phys. Rev. E 71 (2005) 036133.
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Beáta Oborny, Géza Meszéna, and György Szabó:
Dynamics of populations on the verge of extinction
OIKOS 109 (2005) 291-296.
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Attila Szolnoki, György Szabó, and Mária Ravasz:
Three-state Potts model in combination with the rock-scissors-paper game
Phys. Rev. E 71 (2005) 027102.
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Attila Szolnoki and György Szabó:
Phase transitions for rock-scissors-paper game on different networks
Phys. Rev. E 70 (2004) 037102.
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Attila Szolnoki and György Szabó:
Vertex dynamics during domain growth in three-state models
Phys. Rev. E 70 (2004) 027101.
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Mária Ravasz, György Szabó, and Attila Szolnoki:
Spreading of families in cyclic predator-prey models
Phys. Rev. E 70 (2004) 012901.
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György Szabó and Gustavo Arial Sznaider:
Phase transition and selection in a four-species cyclic predator-prey model
Phys. Rev. E 69 (2004) 031911.
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György Szabó and Jeromos Vukov:
Cooperation for volunteering and partially random partnerships
Phys. Rev. E 69 (2004) 036107.
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György Szabó, Attila Szolnoki and Rudolf Izsák:
Rock-scissors-paper game on regular small-world networks
J. Phys. A: Math. Gen. 37 (2004) 2599-2609.
PDF
Christoph Hauert and György Szabó:
Prisoner's dilemma and public goods games in different geometries:
compulsary versus voluntary interactions
Complexity 8 (2003) 31-38.
György Szabó and Christoph Hauert:
Evolutionary prisoner's dilemma games with voluntary participation
Phys. Rev. E 66 (2002) 062903.
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György Szabó and Christoph Hauert:
Phase transitions and volunteering in spatial public goods games
Phys. Rev. Lett. 89 (2002) 118101.
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György Szabó, Hajnalka Gergely, and Beata Oborny:
Generalized contact process on random environments
Phys. Rev. E 65 (2002) 066111.
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Attila Szolnoki and György Szabó:
Influence of extended dynamics on phase transitions in a driven lattice gas
Phys. Rev. E 65 (2002) 047101.
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György Szabó and István Borsos:
A cellular automaton with two phase transitions
J. Phys. A: Math. Gen. 35 (2002) L189-L192.
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György Szabó and Attila Szolnoki:
Three-state cyclic voter model extended with Potts energy
Phys. Rev. E 65 (2002) 036115.
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György Szabó and Tamás Czárán:
Defensive alliances in spatial models of cyclical population interaction
Phys. Rev. E 64 (2001) 042902.
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György Szabó and Tamás Czárán:
Phase transition in a spatial Lotka-Volterra model
Phys. Rev. E 63 (2001) 061904.
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György Szabó, Tibor Antal, Péter Szabó, and Michel Droz:
On the Role of External Constraints in a Spatially Extended Evolutionary Prisoner's Dilemma Game
In Modeling Complex Systems, AIP Conference Proceedings, Vol. 574, Eds. P. L. Garrido
and J. Marro, (AIP, Melville, 2001) pp. 38-55.
PDF
György Szabó:
Branching annihilating random walk on random regular graphs
Phys. Rev. E 62 (2000) 7474.
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György Kádár and György Szabó:
Hysteresis modelling
J. Magn. Magn. Mat. 215-216 (2000) 592.
György Szabó, Tibor Antal, Péter Szabó, and Michel Droz:
Spatial evolutionary prisoner's dilemma game with three strategies and external constraints
Phys. Rev. E 62 (2000) 1095.
PDF
György Szabó and György Kádár:
Hysteresis in a dipolar Ising model
Physica B 275 (2000) 187.
György Szabó, M. A. Santos and J. F. F. Mendes:
Vortex dynamics in a three-state model under cyclic dominance
Phys. Rev. E 60 (1999) 3776.
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György Szabó and Maria Augusta Santos:
Branching annihilating random walks with parity conservation on a square lattice
Phys. Rev. E 59 (1999) R2509.
PDF
György Szabó and György Kádár:
Magnetic hysteresis in an Ising-like dipole-dipole model
Phys. Rev. B 58 (1998) 5584.
PDF
György Szabó and Csaba Tőke:
Evolutionary prisoner's dilemma game on a square lattice
Phys. Rev. E 58 (1998) 69.
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György Szabó:
Domain growth controlled by interfacial transport in two-dimensional systems
Phys. Rev. E 57 (1998) 6172.
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György Szabó and László Udvardi:
Lattice-gas model for alkali-fullerides: body-centered-cubic structure
J. Phys.: Condens. Matter. 10 (1998) 4211-4219.
György Szabó, Attila Szolnoki, Tibor Antal, and István Borsos:
Self-organizing domain structure in a driven lattice gas
Phys. Rev. E 55 (1997) 5275.
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Attila Szolnoki, György Szabó and Ole G. Mouritsen:
Anisotropic ordering in a two-temperature lattice gas
Phys. Rev. E 55 (1997) 2255.
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György Szabó and Attila Szolnoki:
Generalized mean-field study of a driven lattice gas
Phys. Rev. E 53 (1996) 2196-2199.
PDF
László Udvardi and György Szabó:
Lattice-gas model for alkali-fullerides: face-centered-cubic structure
J. Phys.: Cond. Matter 8 (1996) 10959-10971.
László Udvardi and György Szabó:
Lattice-gas model for alkali-fullerides
Physics and Chemistry of Fullerenes and derivatives
Proc. Int, Winterschool on Electronic Properties of Novel Materials
Eds.: H. Kuzmany, J. Fink, M. Mehring, ans S. Roth
Word Scientifics, Singapore, 1995.
György Szabó:
Instabilities and pattern formation in driven diffusive systems
Phys. Rev. E 49 (1994) 3508.
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György Szabó, Attila Szolnoki, and Tibor Antal:
Anisotropic polydomain structure in a driven lattice gas with repulsive interaction
Phys. Rev. E 49 (1994) 299-304.
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György Szabó and Géza Ódor:
Extended mean-field study of a stochastic cellular automaton
Phys. Rev. E 49 (1994) 2764.
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Géza Ódor and György Szabó:
Universality change in stochastic cellular automaton with applied site exchange
Phys. Rev. E 49 (1994) R3555.
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György Szabó and István Borsos:
Evolution and extinction of families in a cellular automaton
Phys. Rev. E 49 (1994) 5900.
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Géza Ódor, Nino Boccara, and György Szabó:
Phase transition study of a one-dimensional probabilistic site-exchange cellular automaton
Phys. Rev. E 48 (1993) 3168.
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G. Szabó, A. Szolnoki, T. Antal, and I Borsos:
Interface instability in driven lattice gases
Fractals 1 (1993) 954.
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Attila Szolnoki and György Szabó:
Breaking of forward-backward symmetry in driven systems
Phys. Rev. E 48 (1993) 611.
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György Szabó, Attila Szolnoki, and Géza Ódor:
Orientation in a driven lattice gas
Phys. Rev. B 46 (1992) 11 432.
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G. Szabó, A. Szolnoki, Z. Juhász, and G. Ódor:
Enhanced fluctuations in driven lattice gases
Physica A 191 (1992) 445.
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György Szabó and Attila Szolnoki:
Coupled-chain approximation for driven lattice-gas models
Phys. Rev. B 47 (1993) 8260.
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György Szabó:
Monte Carlo simulation of reorientation driven by oxygen transport in YBa2Cu3O6.5
Phys. Rev. B 43 (1991) 13 614.
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György Szabó, Attila Szolnoki and László Bodócs:
Correlations induced by transport in a one-dimensional lattice gas
Phys. Rev A 44 (1991) 6375-6378.
PDF
György Szabó and Attila Szolnoki:
Transport driven reorientation in a square lattice gas model
Phys. Rev. A 41 (1990) 2235.
PDF
György Szabó:
Thermodynamic Aspects of Chemically Curved Crystals
J. Material Science 24 (1989) 2295.
B. Keszei, Gy. Szabó, J. Vandlik, L. Pogány and G. Oszlányi:
Growth of BCSCO single crystals by slow cooling flux method
J. Less-Common Metals 155 (1989) 229.
György Szabó:
Monte Carlo simulation of a Coulomb gas in simple cubic lattice
Solid State Ionics 28-30 (1988) 86.
Gy. Szabó, Z. Juhász, B. Keszei, L. Gosztonyi, J. Vandlik, G. Battistig and S. Sándor:
Growth Properties of YBa2Cu3O7 Single Crystals
Physica C 153-155 (1988) 415.
György Szabó and Zoltán Juhász:
Influence of temperature oscillation on measured crystal weight during Czochralski growth
J. Crystal Growth 83 (1987) 599-601.
Gy. Szabó, Z. Juhász, J. Paitz and J. Pöltl:
Simulation of Czochralski bulk flow under vertical magnetic field
Acta Phys. Hungarica 61 (1987) 177.
Z. Juhász and Gy. Szabó:
Fluctuations of melt temperature and growth rate during Bi4Ge3O12 growth
J. Crystal Growth 79 (1986) 303-306.
Gy. Szabó, Z. Juhász, J. Paitz and J. Pöltl:
Experimental model of magnetic Czochralski growth
J. Crystal Growth 78 (1986) 558-560.
György Szabó and János Kertész:
The lattice gas model on tetrahedral sites of a BCC lattice: anisotropic diffusion in the intermediate phase
J. Phys. C: Solid State Phys. 19 (1986) L273-L277.
György Szabó:
Lattice gas model on tetrahedral sites of BCC lattice
J. Phys. C: Solid State Phys. 19 (1986) 3775-3787.
György Szabó:
Thermal strain during Czochralski growth
J. Crystal Growth 73 (1985) 131-141.
Szabó György:
Szuperionos vezetők (Superionic Conductors, book in Hungarian)
A szilárdtestkutatás újabb eredményei 13
Akadémiai Kiadó, Budapest, 1984
E. Papp, Gy. Szabó and G. Tichy:
Heat diffusivity and heat conductivity of Ni near the Curie point
Solid State Commun. 21 (1977) 487-490.