A spectral-gap shifted Pitt inequality is proved and its admissible polynomial weights are characterized sharply in rank one and modified Jacobi settings.
Stein-Weiss inequality on non-compact symmetric spaces
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Let $\Delta$ be the Laplace-Beltrami operator on a non-compact symmetric space of any rank, and denote the bottom of its $L^2$-spectrum as $-|\rho|^{2}$. In this paper, we provide a comprehensive characterization of both the sufficient and necessary conditions ensuring the validity of the Stein-Weiss inequality for the entire family of operators $\lbrace{(-\Delta+b)^{-\frac{\sigma}{2}}}\rbrace_{\sigma\ge0,\,b\ge-|\rho|^{2}}$. As an application, some weighted functional inequalities, such as Heisenberg's uncertainty principle, Gagliardo-Nirenberg's interpolation inequality, Pitt's inequality, etc., become available in this context. In particular, their sets of admissible indices are larger than those in the Euclidean setting.
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Shifted Pitt and uncertainty inequalities on Riemannian symmetric spaces of noncompact type
A spectral-gap shifted Pitt inequality is proved and its admissible polynomial weights are characterized sharply in rank one and modified Jacobi settings.