On the dimension and smoothness of radial projections
Abstract
This paper contains two results on the dimension and smoothness of radial projections of sets and measures in Euclidean spaces. To introduce the first one, assume that E,K ⊂ R2 are non-empty Borel sets with H K > 0. Does the radial projection of K to some point in E have positive dimension? Not necessarily: E can be zero-dimensional, or E and K can lie on a common line. I prove that these are the only obstructions: if H E > 0, and E does not lie on a line, then there exists a point in x ∈ E such that the radial projection πx(K) has Hausdorff dimension at least (H K)/2. Applying the result with E = K gives the following corollary: if K ⊂ R2 is Borel set, which does not lie on a line, then the set of directions spanned by K has Hausdorff dimension at least (H K)/2. For the second result, let d ≥ 2 and d - 1 < s < d. Let μ be a compactly supported Radon measure in Rd with finite s-energy. I prove that the radial projections of μ are absolutely continuous with respect to Hd - 1 for every centre in Rd spt μ, outside an exceptional set of dimension at most 2(d - 1) - s. In fact, for x outside an exceptional set as above, the proof shows that πxμ ∈ Lp(Sd - 1) for some p > 1. The dimension bound on the exceptional set is sharp.
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