Calculus of Variations and Geometric Measure Theory

M. Garatti - L. Nenna - S. Rota Nodari - L. Tamanini

A PDE approach to Benamou--Brenier formula for the Schrödinger problem

created by garatti on 28 Apr 2026

[BibTeX]

Preprint

Inserted: 28 apr 2026
Last Updated: 28 apr 2026

Year: 2026

Abstract:

We studied the Benamou--Brenier formulation of the Schrödinger problem, focusing on a gap between theoretical results and applications, that often involve measures with unbounded support. While the existing proof in the literature relies on the compactness of the marginals' supports to ensure the necessary regularity of the Schrödinger potentials, we extend the validity of the Benamou--Brenier formula to the larger class of sub-Gaussian probability measures. Exploiting fine estimates on the Hessian of the potentials and the entropic interpolation, we provide an almost self-contained proof that establishes the existence of a velocity field with the appropriate polynomial growth that ensures the right integrability. This result justifies the use of the dynamic formulation in more general settings, such as Gaussian and mixture-of-Gaussians models, important also for the applications.


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