English

Reciprocals and Flowers in Convexity

Metric Geometry 2018-12-21 v1

Abstract

We study new classes of convex bodies and star bodies with unusual properties. First we define the class of reciprocal bodies, which may be viewed as convex bodies of the form "1/K1/K". The map KKK\mapsto K^\prime sending a body to its reciprocal is a duality on the class of reciprocal bodies, and we study its properties. To connect this new map with the classic polarity we use another construction, associating to each convex body KK a star body which we call its flower and denote by KK^\clubsuit. The mapping KKK\mapsto K^\clubsuit is a bijection between the class K0n\mathcal{K}_0^n of convex bodies and the class Fn\mathcal{F}^n of flowers. We show that the polarity map :K0nK0n\circ:\mathcal{K}_0^n\to\mathcal{K}_0^n decomposes into two separate bijections: First our flower map :K0nFn\clubsuit:\mathcal{K}_0^n\to\mathcal{F}^n, followed by the spherical inversion Φ\Phi which maps Fn\mathcal{F}^n back to K0n\mathcal{K}_0^n. Each of these maps has its own properties, which combine to create the various properties of the polarity map. We study the various relations between the four maps \prime, \circ, \clubsuit and Φ\Phi and use these relations to derive some of their properties. For example, we show that a convex body KK is a reciprocal body if and only if its flower KK^\clubsuit is convex. We show that the class Fn\mathcal{F}^n has a very rich structure, and is closed under many operations, including the Minkowski addition. This structure has corollaries for the other maps which we study. For example, we show that if KK and TT are reciprocal bodies so is their "harmonic sum" (K+T)(K^\circ+T^\circ)^\circ. We also show that the volume (iλiKi)\left|\left(\sum_i\lambda_{i}K_i\right)^\clubsuit\right| is a homogeneous polynomial in the λi\lambda_i's, whose coefficients can be called "\clubsuit-type mixed volumes". Related geometric inequalities are also derived.

Keywords

Cite

@article{arxiv.1812.08709,
  title  = {Reciprocals and Flowers in Convexity},
  author = {Emanuel Milman and Vitali Milman and Liran Rotem},
  journal= {arXiv preprint arXiv:1812.08709},
  year   = {2018}
}
R2 v1 2026-06-23T06:51:39.147Z