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Uniform propagation of chaos for Kac's 1D particle system

Probability 2016-12-21 v2 Mathematical Physics math.MP

Abstract

In this paper we study Kac's 1D particle system, consisting of the velocities of NN particles colliding at constant rate and randomly exchanging energies. We prove uniform (in time) propagation of chaos in Wasserstein distance with explicit polynomial rates in NN, for both the squared (i.e., the energy) and non-squared particle system. These rates are of order N1/3N^{-1/3} (almost, in the non-squared case), assuming that the initial distribution of the limit nonlinear equation has finite moments of sufficiently high order (4+ϵ4+\epsilon is enough when using the 2-Wasserstein distance). The proof relies on a convenient parametrization of the collision recently introduced by Hauray, as well as on a coupling technique developed by Cortez and Fontbona.

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Cite

@article{arxiv.1606.06330,
  title  = {Uniform propagation of chaos for Kac's 1D particle system},
  author = {Roberto Cortez},
  journal= {arXiv preprint arXiv:1606.06330},
  year   = {2016}
}

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12 pages