English

On a novel gradient flow structure for the aggregation equation

Analysis of PDEs 2024-12-24 v2 Mathematical Physics math.MP

Abstract

The aggregation equation arises naturally in kinetic theory in the study of granular media, and its interpretation as a 2-Wasserstein gradient flow for the nonlocal interaction energy is well-known. Starting from the spatially homogeneous inelastic Boltzmann equation, a formal Taylor expansion reveals a link between this equation and the aggregation equation with an appropriately chosen interaction potential. Inspired by this formal link and the fact that the associated aggregation equation also dissipates the kinetic energy, we present a novel way of interpreting the aggregation equation as a gradient flow, in the sense of curves of maximal slope, of the kinetic energy, rather than the usual interaction energy, with respect to an appropriately constructed transportation metric on the space of probability measures.

Keywords

Cite

@article{arxiv.2112.08317,
  title  = {On a novel gradient flow structure for the aggregation equation},
  author = {A. Esposito and R. S. Gvalani and A. Schlichting and M. Schmidtchen},
  journal= {arXiv preprint arXiv:2112.08317},
  year   = {2024}
}

Comments

37 pages. Restructured version. Comments welcome

R2 v1 2026-06-24T08:18:56.602Z