English

Dean-Kawasaki Equation with Biot-Savart and Keller-Segel Interactions: Existence and Large Deviations

Probability 2026-05-14 v1 Analysis of PDEs

Abstract

We establish the existence of probabilistically weak, renormalized kinetic solutions to the Dean--Kawasaki equation with singular interaction kernels, including those of Biot--Savart and Keller--Segel type. Under a suitable regularization of the square-root noise coefficient, we further prove a restricted large deviation principle for probabilistically weak solutions to the regularized Dean--Kawasaki equation. The Biot--Savart and Keller--Segel type interactions introduce a scaling criticality within the L1L^1 framework of the Dean--Kawasaki equation and the associated skeleton equation, which gives rise to a significant new challenge. In contrast to [Fehrman, Gess; Invent. Math., 2023], our large deviation analysis relies on a novel exponential tightness argument specifically adapted to the Dean--Kawasaki noise. This approach, combined with a weak-strong uniqueness result for the associated skeleton equation, allows us to partially overcome the criticality induced by the singular interaction kernel.

Keywords

Cite

@article{arxiv.2605.13479,
  title  = {Dean-Kawasaki Equation with Biot-Savart and Keller-Segel Interactions: Existence and Large Deviations},
  author = {Xiaohao Ji and Yue Sun and Zhengyan Wu},
  journal= {arXiv preprint arXiv:2605.13479},
  year   = {2026}
}

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35 pages