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On the absolute continuity of radial and linear projections of missing digits measures
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abstract
In this paper, we study the absolute continuity of radial projections of missing digits measures. We show that for large enough missing digits measures $\lambda$ on $\mathbb{R}^n,n\geq 2,$ for all $x\in\mathbb{R}^n\setminus \mathrm{supp}(\lambda),$ $\Pi_x(\lambda)$ is absolutely continuous with a density function in $L^2(S^{n-1}).$ Our method applies to linear projections as well. In particular, we show that for $\lambda$ as above, the linearly projected measure $P_\theta(\lambda)$ is absolutely continuous with a continuous density function for almost all directions $\theta\in S^{n-1}.$ This implies a version of Palis' conjecture for missing digits sets.
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Cited by 1 Pith paper
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Simultaneous and multiplicative Diophantine approximation on missing-digit fractals
Measures with large Fourier l1 dimension satisfy Khinchin-type and Gallagher-type Diophantine laws, giving new approximation and counting results on missing-digit fractals.
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