A consistence-stability approach to hydrodynamic limit of interacting particle systems on lattices

Author:

Menegaki Angeliki,Mouhot Clément

Publisher

Cellule MathDoc/CEDRAM

Subject

General Medicine

Reference13 articles.

1. [DMOWa] D. Dizdar, G. Menz, F. Otto, and T. Wu. The quantitative hydrodynamic limit of the Kawasaki dynamics. arXiv:1807.09850.

2. [DMOWb] D. Dizdar, G. Menz, F. Otto, and T. Wu. Toward a quantitative theory of the hydrodynamic limit. arXiv:1807.09857.

3. [Fat13] M. Fathi. A two-scale approach to the hydrodynamic limit part II: local Gibbs behavior. ALEA Lat. Am. J. Probab. Math. Stat., 10(2):625–651, 2013.

4. [GOVW09] Ñ. Grunewald, F. Otto, C. Villani, and M. Westdickenberg. A two-scale approach to logarithmic Sobolev inequalities and the hydrodynamic limit. Ann. Inst. Henri Poincaré Probab. Stat., 45(2):302–351, 2009.

5. [GPV88] M. Z. Guo, G. C. Papanicolaou, and S. R. S. Varadhan. Nonlinear diffusion limit for a system with nearest neighbor interactions. Comm. Math. Phys., 118(1):31–59, 1988.

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1. A consistence-stability approach to hydrodynamic limit of interacting particle systems on lattices;Séminaire Laurent Schwartz — EDP et applications;2022-11-29

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