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  • Search: subject:"Fluctuation–dissipation theorem"
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Fluctuation–dissipation theorem 12 Fluctuation-dissipation theorem 3 Aging 2 Effective temperatures 2 Fluctuation dissipation theorem 2 Glassy systems 2 Slow relaxation 2 Aging effects 1 Allgemeines Gleichgewicht 1 Arrow-Debreu model 1 Basset force 1 Damage spreading 1 Detailed balance 1 Diffusivity 1 Disequilibrium dynamics 1 Dynamic diffusion coefficient 1 Dynamic mobility/conductivity 1 Dynamic probability susceptibility 1 Electrolyte solution 1 Entropy 1 Equilibrium theory 1 Extended linear response analysis 1 Functional integral representation 1 General equilibrium 1 Generalized Langevin equation 1 Generating functional technique 1 Glasses 1 Gleichgewichtstheorie 1 Graph expansion 1 Graph spectrum 1 Graph theory 1 Graphentheorie 1 Green–Kubo formula 1 Hydrodynamics 1 Irreversible thermodynamics 1 Ising model 1 Kubo formula 1 Langevin dynamics 1 Large deviation statistics 1 Linear response 1
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Article 19
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Article in journal 1 Aufsatz in Zeitschrift 1
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Undetermined 18 English 1
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Pérez-Madrid, A. 2 Reguera, D. 2 Báez, G. 1 Casas-Vázquez, J. 1 Corberi, Federico 1 Criado-Sancho, M. 1 Cáceres, M.O. 1 Dawson, K.A. 1 De Gregorio, P. 1 Delgado, S. 1 Fodor, Étienne 1 Fusco, Nicola 1 Grebenkov, Denis S. 1 Grigera, S.A. 1 Izmailov, A.F. 1 Jou, D. 1 Kutner, R. 1 Lenzi, Ervin K 1 Lippiello, Eugenio 1 Magalhães, Aglaé C.N. de 1 Mauger, Alain 1 Mendes, Renio S 1 Myerson, A.S. 1 Méndez-Sánchez, R.A. 1 Naspreda, M. 1 Olivares-Robles, M.A. 1 Pottier, Noëlle 1 Rabani, Yuval 1 Redinz, José Arnaldo 1 Rostiashvili, V.G. 1 Rubí, J.M. 1 Rubı́, J.M. 1 Rukhadze, A.A. 1 Saeki, Mizuhiko 1 Schram, P.P.J.M. 1 Schulman, Leonard J. 1 Sciortino, F. 1 Shibata, Hiroshi 1 Silva, Luciano R da 1 Tamarit, Francisco A. 1
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Physica A: Statistical Mechanics and its Applications 18 Journal of mathematical economics 1
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RePEc 18 ECONIS (ZBW) 1
Showing 1 - 10 of 19
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The invisible hand of Laplace : the role of market structure in price convergence and oscillation
Rabani, Yuval; Schulman, Leonard J. - In: Journal of mathematical economics 95 (2021), pp. 1-14
Persistent link: https://www.econbiz.de/10012801360
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Generalized Langevin equation with hydrodynamic backflow: Equilibrium properties
Fodor, Étienne; Grebenkov, Denis S.; Visco, Paolo; van … - In: Physica A: Statistical Mechanics and its Applications 422 (2015) C, pp. 107-112
that is consistent with the fluctuation–dissipation theorem. We rely on general time-reversal arguments that apply …
Persistent link: https://www.econbiz.de/10011194088
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Relaxation method and TCLE method of linear response in terms of thermo-field dynamics
Saeki, Mizuhiko - In: Physica A: Statistical Mechanics and its Applications 387 (2008) 8, pp. 1827-1850
analytically investigated, and also the fluctuation–dissipation theorem is examined for the two methods in terms of TFD. The TCLE …
Persistent link: https://www.econbiz.de/10010590872
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Quasi-static properties of Markovian systems in metastable state: Fluctuation–dissipation theorem
Báez, G.; Méndez-Sánchez, R.A. - In: Physica A: Statistical Mechanics and its Applications 379 (2007) 2, pp. 357-371
We show detailed calculations to obtain a metastable fluctuation–dissipation theorem (FDT) for Markovian systems with …
Persistent link: https://www.econbiz.de/10011058449
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Remarks on the Nyquist and Callen–Welton theorems
Trigger, S.A.; van Heijst, G.J.F.; Rukhadze, A.A.; … - In: Physica A: Statistical Mechanics and its Applications 374 (2007) 1, pp. 77-84
The connection of the Callen–Welton and Nyquist fluctuation–dissipation relations is considered for plasma-like classical and quantum systems. The conditions for appearance of the dissipative parameters in the equilibrium current–current correlation function are investigated. The paper...
Persistent link: https://www.econbiz.de/10010589188
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Nonequilibrium temperature and fluctuation–dissipation temperature in flowing gases
Jou, D.; Criado-Sancho, M.; Casas-Vázquez, J. - In: Physica A: Statistical Mechanics and its Applications 358 (2005) 1, pp. 49-57
The expressions for the nonequilibrium temperature derived from the fluctuation–dissipation theorem and from the …
Persistent link: https://www.econbiz.de/10011058862
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Fluctuation–dissipation theorems in the GENERIC formalism: The viscoelastic fluids
Vázquez, F.; Olivares-Robles, M.A.; Delgado, S. - In: Physica A: Statistical Mechanics and its Applications 354 (2005) C, pp. 19-33
Fluctuation–dissipation relations (FDR) for a Maxwell fluid are computed via the GENERIC formalism. This formalism is determined by four building blocks, two “potentials” (total energy and entropy) and two “matrices” which determine the dynamics. The FDR exhibits specific features...
Persistent link: https://www.econbiz.de/10011064586
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Glassy dynamics: effective temperatures and intermittencies from a two-state model
Naspreda, M.; Reguera, D.; Pérez-Madrid, A.; Rubí, J.M. - In: Physica A: Statistical Mechanics and its Applications 351 (2005) 1, pp. 14-21
, which has been used [Physica A 329 (2003) 357] to explain the origin of the violation of the fluctuation–dissipation theorem …
Persistent link: https://www.econbiz.de/10011064658
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Origin of the violation of the fluctuation–dissipation theorem in systems with activated dynamics
Pérez-Madrid, A.; Reguera, D.; Rubı́, J.M. - In: Physica A: Statistical Mechanics and its Applications 329 (2003) 3, pp. 357-364
We analyze the validity of the fluctuation–dissipation theorem for slow relaxation systems in the context of mesoscopic …
Persistent link: https://www.econbiz.de/10011058109
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Slowed relaxational dynamics beyond the fluctuation–dissipation theorem
De Gregorio, P.; Sciortino, F.; Tartaglia, P.; … - In: Physica A: Statistical Mechanics and its Applications 307 (2002) 1, pp. 15-26
the noise. One result is a generalisation of the Fluctuation–dissipation theorem of type two (FDT2), and the method is …
Persistent link: https://www.econbiz.de/10010873554
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