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Paley–Wiener theorem for line bundles over compact symmetric spaces and new estimates for the Heckman–Opdam hypergeometric functions

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  • Vivian M. Ho
  • Gestur Ólafsson

Abstract

Paley–Wiener type theorems describe the image of a given space of functions, often compactly supported functions, under an integral transform, usually a Fourier transform on a group or homogeneous space. In this article we proved a Paley–Wiener theorem for smooth sections f of homogeneous line bundles on a compact Riemannian symmetric space U/K. It characterizes f with small support in terms of holomorphic extendability and exponential growth of their χ‐spherical Fourier transforms, where χ is a character of K. An important tool in our proof is a generalization of Opdam's estimate for the hypergeometric functions associated to multiplicity functions that are not necessarily positive. At the same time the radius of the domain where this estimate is valid is increased. This is done in an appendix.

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  • Vivian M. Ho & Gestur Ólafsson, 2018. "Paley–Wiener theorem for line bundles over compact symmetric spaces and new estimates for the Heckman–Opdam hypergeometric functions," Mathematische Nachrichten, Wiley Blackwell, vol. 291(14-15), pages 2204-2228, October.
  • Handle: RePEc:bla:mathna:v:291:y:2018:i:14-15:p:2204-2228
    DOI: 10.1002/mana.201600148
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    Cited by:

    1. Sanjoy Pusti & Swagato K. Ray, 2023. "Ramanujan's master theorem for radial sections of line bundles over the Poincaré upper half plane," Mathematische Nachrichten, Wiley Blackwell, vol. 296(6), pages 2535-2554, June.

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