Covariograms generated by valuations
arXiv:1307.1529 · doi:10.1093/imrn/rnu219
Abstract
Let ϕbe a real-valued valuation on the family of compact convex subsets of \mathbb{R}^n and let K be a convex body in \mathbb{R}^n. We introduce the ϕ-covariogram g_{K,ϕ} of K as the function associating to each x \in \mathbb{R}^n the value ϕ(K \cap (K+x)). If ϕis the volume, then g_{K,ϕ} is the covariogram, extensively studied in various sources. When ϕis a quermassintegral (e.g., surface area or mean width) g_{K,ϕ} has been introduced by Nagel. We study various properties of ϕ-covariograms, mostly in the case n=2 and under the assumption that ϕis translation invariant, monotone and even. We also consider the generalization of Matheron's covariogram problem to the case of ϕ-covariograms, that is, the problem of determining an unknown convex body K, up to translations and point reflections, by the knowledge of g_{K,ϕ}. A positive solution to this problem is provided under different assumptions, including the case that K is a polygon and ϕis either strictly monotone or ϕis the width in a given direction. We prove that there are examples in every dimension n\geq3 where K is determined by its covariogram but it is not determined by its width-covariogram. We also present some consequence of this study in stochastic geometry.
IMRN (International Mathematics Research Notices)
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