English

Discrete Poincare and Bogovskii operators on cochains and Whitney forms

Numerical Analysis 2026-04-03 v2 Numerical Analysis

Abstract

Smooth Poincare operators are a tool used to show the vanishing of smooth de Rham cohomology on contractible manifolds and have found use in the analysis of finite element methods based on the Finite Element Exterior Calculus (FEEC). We construct analogous discrete Poincare operators acting on cochains and Whitney forms. We provide explicit, constructive realizations of these operators under various assumptions on the underlying domain or simplicial complex. In particular, we provide simple constructions for the discrete Poincare operators on simplicial complexes which are collapsible and those with underlying domain being star-shaped with respect to a point. We then provide more abstract constructions on simplicial complexes which are discrete contractible and domains which are Lipschitz contractible. We also modify the discrete Poincare operator on star-shaped domains to construct a discrete Bogovskii operator which satisfies the requisite homotopy identity while preserving homogeneous boundary conditions. Applications arise in the construction of discrete scalar and vector potentials and in the discrete wedge product of Discrete Exterior Calculus (DEC).

Keywords

Cite

@article{arxiv.2603.29018,
  title  = {Discrete Poincare and Bogovskii operators on cochains and Whitney forms},
  author = {Johnny Guzmán and Anil N. Hirani and Bingyan Liu and Pratyush Potu},
  journal= {arXiv preprint arXiv:2603.29018},
  year   = {2026}
}