English

Expectation of a random submanifold: the zonoid section

Probability 2023-03-23 v2 Differential Geometry Metric Geometry

Abstract

We develop a calculus based on zonoids - a special class of convex bodies - for the expectation of functionals related to a random submanifold ZZ defined as the zero set of a smooth vector valued random field on a Riemannian manifold. We identify a convenient set of hypotheses on the random field under which we define its zonoid section, an assignment of a zonoid ζ(p)\zeta(p) in the exterior algebra of the cotangent space at each point pp of the manifold. We prove that the first intrinsic volume of ζ(p)\zeta(p) is the Kac-Rice density of the expected volume of ZZ, while its center computes the expected current of integration over ZZ. We show that the intersection of random submanifolds corresponds to the wedge product of the zonoid sections and that the preimage corresponds to the pull-back. Combining this with the recently developed zonoid algebra, it allows to give a multiplication structure to the Kac-Rice formulas, resembling that of the cohomology ring of a manifold. Moreover, it establishes a connection with the theory of convex bodies and valuations, which includes very deep and difficult results such as the Alexandrov-Fenchel inequality and the Brunn-Minkowsky inequality. We export them to this context to prove two analogous new inequalities for random submanifolds. Applying our results in the context of Finsler geometry, we prove some new Crofton formulas for the length of curves and the Holmes-Thompson volumes of submanifolds in a Finsler manifold.

Keywords

Cite

@article{arxiv.2210.11214,
  title  = {Expectation of a random submanifold: the zonoid section},
  author = {Léo Mathis and Michele Stecconi},
  journal= {arXiv preprint arXiv:2210.11214},
  year   = {2023}
}

Comments

52 pages. The second version has a new title and an additional main result (Theorem F) that explains the title

R2 v1 2026-06-28T04:04:52.798Z