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05.45.-a Nonlinear dynamics and nonlinear dynamical systems 12 random processes 6 noise 5 and Brownian motion 4 05.40.-a Fluctuation phenomena 3 05.45.Pq Numerical simulations of chaotic systems 3 05.20.-y Classical statistical mechanics 2 75.10.Hk Classical spin models 2 87.23.Cc Population dynamics and ecological pattern formation 2 89.75.-k Complex systems 2 Nonlinear dynamics and nonlinear dynamical systems 2 PACS. 05.40.-a Fluctuation phenomena 2 PACS. 05.45.-a Nonlinear dynamics and nonlinear dynamical systems 2 PACS. 05.45.Xt Synchronization 2 03.75.-b Matter waves 1 05.10.-a Computational methods in statistical physics and nonlinear dynamics 1 05.20.-y Statistical mechanics 1 05.20.Dd Kinetic theory 1 05.60.-k Transport processes 1 05.70.Ce Thermodynamic functions and equations of state 1 29.27.Bd Beam dynamics 1 47.10.-g General theory in fluid dynamics 1 47.20.Ky Nonlinearity (including bifurcation theory) 1 47.32.C- Vortex dynamics 1 47.53.+n Fractals 1 47.54.+r Pattern selection 1 64.60.Ht Dynamic critical phenomena 1 87.10.+e General theory and mathematical aspects 1 Fractal 1 PACS. 05.40.Fb Random walks and Levy flights 1 PACS. 05.40.Jc Brownian motion 1 PACS. 05.45.+a Nonlinear dynamics and nonlinear dynamical systems – 05.45.Gg Control of chaos 1 PACS. 05.45.-a Nonlinear dynamics and nonlinear dynamical systems - 05.40.-a Fluctuation phenomena 1 PACS. 87.23.-n Ecology and evolution 1 PACS. 87.23.Cc Population dynamics and ecological pattern formation - 05.45.-a Nonlinear dynamics and nonlinear dynamical systems - 82.20.Wt Computational modeling 1 Social and economic systems 1 Time series analysis 1 Traffic flow 1 and Brownian motion - 05.45.-a Nonlinear dynamics and nonlinear dynamical systems - 82.20.Mj Nonequilibrium kinetics 1 applications of chaos – 05.45.Pq Numerical simulations of chaotic models 1
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Article 22
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Borgonovi, F. 2 Celardo, G. L. 2 Chavanis, P. H. 2 Ebeling, W. 2 Schimansky-Geier, L. 2 Schweitzer, F. 2 Spagnolo, B. 2 Trasarti-Battistoni, R. 2 Valenti, D. 2 Zanette, D.H. 2 Abramson, G. 1 Anderson, D. 1 Chen, Shi Gang 1 Chen, Shigang 1 Coraddu, M. 1 Díaz-Guilera, A. 1 Ejtehadi, M.R. 1 Erdmann, U. 1 Fedele, R. 1 Fiasconaro, A. 1 Gerami, R. 1 Gleiser, P.M. 1 Hu, Gang 1 Kama, Santi 1 Krishnamurthy, S. 1 Kuramoto, Y. 1 Lemou, M. 1 Lisak, M. 1 Llas, M. 1 Lu, Yongbo 1 Lyra, M. 1 López, J.M. 1 Moyano, L.G. 1 Nakao, H. 1 Roux, S. 1 Sailer, X. 1 Sancho, J.M. 1 Shang, Pengjian 1 Sznajd-Weron, K. 1 Sánchez, A. 1
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The European Physical Journal B - Condensed Matter and Complex Systems 20 Physica A: Statistical Mechanics and its Applications 2
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RePEc 22
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Nonlinear mean field Fokker-Planck equations. Application to the chemotaxis of biological populations
Chavanis, P. H. - In: The European Physical Journal B - Condensed Matter and … 62 (2008) 2, pp. 179-208
We study a general class of nonlinear mean field Fokker-Planck equations in relation with an effective generalized thermodynamical (E.G.T.) formalism. We show that these equations describe several physical systems such as: chemotaxis of bacterial populations, Bose-Einstein condensation in the...
Persistent link: https://www.econbiz.de/10009280941
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The role of time scale separation in a nonequilibrium roughening transition
Llas, M.; Díaz-Guilera, A.; López, J.M.; Gleiser, P.M. - In: Physica A: Statistical Mechanics and its Applications 374 (2007) 1, pp. 289-292
In this work we analyze the role of time scale separation between the external driving and the avalanche relaxation dynamics in a one-dimensional model of propagation of innovations among economic agents. When the time scales are separated the model presents a nonequilibrium roughening...
Persistent link: https://www.econbiz.de/10011059059
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Kinetic theory of point vortices in two dimensions: analytical results and numerical simulations
Chavanis, P. H.; Lemou, M. - In: The European Physical Journal B - Condensed Matter and … 59 (2007) 2, pp. 217-247
We develop the kinetic theory of point vortices in two-dimensional hydrodynamics and illustrate the main results of the theory with numerical simulations. We first consider the evolution of the system “as a whole” and show that the evolution of the vorticity profile is due to resonances...
Persistent link: https://www.econbiz.de/10009281136
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The application of Hölder exponent to traffic congestion warning
Shang, Pengjian; Lu, Yongbo; Kama, Santi - In: Physica A: Statistical Mechanics and its Applications 370 (2006) 2, pp. 769-776
In this paper, we applied multifractal modeling techniques to analyze the traffic data collected from the Beijing Yuquanying. The results indicated that multifractal characteristics obviously exist in the traffic system; the degree of fractality of these traffic data tends to increase as the...
Persistent link: https://www.econbiz.de/10011057960
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Asymptotic regime in N random interacting species
Fiasconaro, A.; Valenti, D.; Spagnolo, B. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 189-194
The asymptotic regime of a complex ecosystem with N random interacting species and in the presence of an external multiplicative noise is analyzed. We find the role of the external noise on the long time probability distribution of the ith density species, the extinction of species and the local...
Persistent link: https://www.econbiz.de/10009280043
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Numerical study of the oscillatory convergence to the attractor at the edge of chaos
Tonelli, R.; Coraddu, M. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 355-359
This paper compares three different types of “onset of chaos” in the logistic and generalized logistic map: the Feigenbaum attractor at the end of the period doubling bifurcations; the tangent bifurcation at the border of the period three window; the transition to chaos in the generalized...
Persistent link: https://www.econbiz.de/10009280832
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The topological non-connectivity threshold in quantum long-range interacting spin systems
Borgonovi, F.; Celardo, G. L.; Trasarti-Battistoni, R. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 27-31
Quantum characteristics of the Topological Non-connectivity Threshold (TNT), introduced in [F. Borgonovi, G.L. Celardo, M. Maianti, E. Pedersoli, J. Stat. Phys. <Emphasis Type="Bold">116, 516 (2004)], have been analyzed in the hard quantum regime. New interesting perspectives in term of the possibility to study the...</emphasis>
Persistent link: https://www.econbiz.de/10009281073
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The Topological Nonconnectivity Threshold and magnetic phase transitions in classical anisotropic long-range interacting spin systems
Trasarti-Battistoni, R.; Borgonovi, F.; Celardo, G. L. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 69-72
We review, with emphasis on the dynamical point of view, the classical characteristics of the Topological Nonconnectivity Threshold (TNT), recently introduced in F. Borgonovi, G.L. Celardo, M. Maianti and E. Pedersoli, J. Stat. Phys. <Emphasis Type="Bold">116, 1435 (2004). This shows interesting connections among...</emphasis>
Persistent link: https://www.econbiz.de/10009282301
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How the coherent instabilities of an intense high-energy charged-particle beam in the presence of nonlocal effects can be explained within the context of the Madelung fluid description
Fedele, R.; Anderson, D.; Lisak, M. - In: The European Physical Journal B - Condensed Matter and … 49 (2006) 3, pp. 275-281
A hydrodynamical description of coherent instabilities that take place in the longitudinal dynamics of a charged-particle coasting beam in a high-energy accelerating machine is presented. This is done within the framework of the Madelung fluid picture provided by the Thermal Wave Model. The well...
Persistent link: https://www.econbiz.de/10009282801
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Moment equations for a spatially extended system of two competing species
Valenti, D.; Schimansky-Geier, L.; Sailer, X.; Spagnolo, B. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 199-203
The dynamics of a spatially extended system of two competing species in the presence of two noise sources is studied. A correlated dichotomous noise acts on the interaction parameter and a multiplicative white noise affects directly the dynamics of the two species. To describe the spatial...
Persistent link: https://www.econbiz.de/10009283092
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