English

On the Initial Boundary-Value Problem in the Kinetic Theory of Hard Particles II: Non-uniqueness

Mathematical Physics 2018-05-15 v1 Classical Analysis and ODEs math.MP Classical Physics

Abstract

We prove that to each initial datum in a set of positive measure in phase space, there exist uncountably-many associated weak solutions of Newton's equations of motion which govern the dynamics of two non-spherical sets with real-analytic boundaries subject to the conservation of linear momentum, angular momentum and kinetic energy. We prove this result by first exhibiting non-uniqueness of classical solution to a constrained Monge-Amp\`ere equation posed on Euclidean space, and then applying the deep existence theory of Ballard for hard particle dynamics. In the final section of the article, we discuss the relevance of this observation to the kinetic theory of hard particle systems.

Keywords

Cite

@article{arxiv.1805.04615,
  title  = {On the Initial Boundary-Value Problem in the Kinetic Theory of Hard Particles II: Non-uniqueness},
  author = {Mark Wilkinson},
  journal= {arXiv preprint arXiv:1805.04615},
  year   = {2018}
}