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  • Search: subject:"05.10.Gg Stochastic analysis methods"
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05.40.-a Fluctuation phenomena 14 Langevin 14 05.10.Gg Stochastic analysis methods (Fokker-Planck 13 etc.) 13 and Brownian motion 12 noise 12 random processes 12 05.10.Gg Stochastic analysis methods 11 02.50.-r Probability theory 7 stochastic processes 6 and statistics 5 02.50.Ey Stochastic processes 4 89.65.Gh Economics 3 business and management 3 econophysics 3 financial markets 3 05.20.-y Classical statistical mechanics 2 05.70.Ln Nonequilibrium and irreversible thermodynamics 2 89.40.-a Transportation 2 thermodynamics 2 02.30.Jr Partial differential equations 1 02.50.Ga Markov processes 1 03.75.Mn Multicomponent condensates 1 05.20.Dd Kinetic theory (see also 51.10.+y Kinetic and transport theory of gases) 1 05.40.-a Brownian motion 1 05.40.-a Nonlinear dynamics and chaos 1 05.40.Ca Noise 1 05.40.Fb Random walks and Levy flights 1 05.40.Jc Brownian motion 1 05.45.Yv Solitons 1 05.50.+q Lattice theory and statistics (Ising 1 05.70.-a Thermodynamics 1 05.90.+m Other topics in statistical physics 1 47.70.-n Reactive and radiative flows 1 52.25.-b Plasma properties 1 52.30.Cv Magnetohydrodynamics (including electron magnetohydrodynamics) 1 52.65.Ff Fokker-Planck and Vlasov equation 1 64.60.-i General studies of phase transitions 1 64.60.Ht Dynamic critical phenomena 1 87.23.-n Ecology and evolution 1
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Hänggi, P. 3 Anteneodo, C. 2 Riera, R. 2 Abdelhameed, T. N. 1 Aumaître, S. 1 Basu, Urna 1 Botet, R. 1 Brunhuber, C. 1 Burada, P. S. 1 Callebaut, D. K. 1 Chavanis, P. H. 1 Cortines, A. 1 Cortines, A. A.G. 1 Cremer, J. 1 Curado, E. M.F. 1 Denisov, S. I. 1 Dubkov, A. 1 Dvornichenko, A. V. 1 Dybiec, B. 1 Ebbinghaus, M. 1 Fa, K. 1 Frank, T. D. 1 Frey, E. 1 Gaididei, Y. 1 Gammaitoni, L. 1 Grandclaude, H. 1 Grecos, A. P. 1 Helbing, D. 1 Henkel, M. 1 Hinkel, J. 1 Horsthemke, W. 1 Jung, P. 1 Kaupužs, J. 1 Kharchenko, D. O. 1 Khater, A. H. 1 Kourakis, I. 1 Kuratsuji, H. 1 Leprovost, N. 1 Mahnke, R. 1 Mallick, K. 1
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The European Physical Journal B - Condensed Matter and Complex Systems 25
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RePEc 25
Showing 21 - 25 of 25
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Diffusion in flashing periodic potentials
Spagnolo, B.; Dubkov, A. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 299-303
The one-dimensional overdamped Brownian motion in a symmetric periodic potential modulated by external time-reversible noise is analyzed. The calculation of the effective diffusion coefficient is reduced to the mean first passage time problem. We derive general equations to calculate the...
Persistent link: https://www.econbiz.de/10009280668
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Stability of a nonlinear oscillator with random damping
Leprovost, N.; Aumaître, S.; Mallick, K. - In: The European Physical Journal B - Condensed Matter and … 49 (2006) 4, pp. 453-458
A noisy damping parameter in the equation of motion of a nonlinear oscillator renders the fixed point of the system unstable when the amplitude of the noise is sufficiently large. However, the stability diagram of the system can not be predicted from the analysis of the moments of the linearized...
Persistent link: https://www.econbiz.de/10009281522
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Stochastic storage models and noise-induced phase transitions
Shpyrko, S.; Ryazanov, V. V. - In: The European Physical Journal B - Condensed Matter and … 54 (2006) 3, pp. 345-354
The most frequently used in physical application diffusive (based on the Fokker-Planck equation) model leans upon the assumption of small jumps of a macroscopic variable for each given realization of the stochastic process. This imposes restrictions on the description of the phase transition...
Persistent link: https://www.econbiz.de/10009282121
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Statistical-mechanical description of classical test-particle dynamics in the presence of an external force field: modelling noise and damping from first principles
Kourakis, I.; Grecos, A. P. - In: The European Physical Journal B - Condensed Matter and … 50 (2006) 1, pp. 345-349
Aiming to establish a rigorous link between macroscopic random motion (described e.g. by Langevin-type theories) and microscopic dynamics, we have undertaken a kinetic-theoretical study of the dynamics of a classical test-particle weakly coupled to a large heat-bath in thermal equilibrium. Both...
Persistent link: https://www.econbiz.de/10009282373
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Non-homogeneous random walks, generalised master equations, fractional Fokker-Planck equations, and the generalised Kramers-Moyal expansion
Metzler, R. - In: The European Physical Journal B - Condensed Matter and … 19 (2001) 2, pp. 249-258
Persistent link: https://www.econbiz.de/10009281578
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