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Boundedness properties of fractional integral operators associated to non-doubling measures

José García-Cuerva; A. Eduardo Gatto

Studia Mathematica (2004)

  • Volume: 162, Issue: 3, page 245-261
  • ISSN: 0039-3223

Abstract

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The main purpose of this paper is to investigate the behavior of fractional integral operators associated to a measure on a metric space satisfying just a mild growth condition, namely that the measure of each ball is controlled by a fixed power of its radius. This allows, in particular, non-doubling measures. It turns out that this condition is enough to build up a theory that contains the classical results based upon the Lebesgue measure on Euclidean space and their known extensions for doubling measures. We start by analyzing the images of the Lebesgue spaces associated to the measure. The Lipschitz spaces, defined in terms of the metric, also play a basic role. For a Euclidean space equipped with one of these measures, we also consider the so-called regular BMO space introduced by X. Tolsa. We show that it contains the image of a Lebesgue space in the appropriate limit case and also that the image of the regular BMO space is contained in a suitable Lipschitz space.

How to cite

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José García-Cuerva, and A. Eduardo Gatto. "Boundedness properties of fractional integral operators associated to non-doubling measures." Studia Mathematica 162.3 (2004): 245-261. <http://eudml.org/doc/285273>.

@article{JoséGarcía2004,
abstract = {The main purpose of this paper is to investigate the behavior of fractional integral operators associated to a measure on a metric space satisfying just a mild growth condition, namely that the measure of each ball is controlled by a fixed power of its radius. This allows, in particular, non-doubling measures. It turns out that this condition is enough to build up a theory that contains the classical results based upon the Lebesgue measure on Euclidean space and their known extensions for doubling measures. We start by analyzing the images of the Lebesgue spaces associated to the measure. The Lipschitz spaces, defined in terms of the metric, also play a basic role. For a Euclidean space equipped with one of these measures, we also consider the so-called regular BMO space introduced by X. Tolsa. We show that it contains the image of a Lebesgue space in the appropriate limit case and also that the image of the regular BMO space is contained in a suitable Lipschitz space.},
author = {José García-Cuerva, A. Eduardo Gatto},
journal = {Studia Mathematica},
keywords = {Calderón–Zygmund theory; fractional integrals; Lipschitz spaces; BMO; non-doubling measures},
language = {eng},
number = {3},
pages = {245-261},
title = {Boundedness properties of fractional integral operators associated to non-doubling measures},
url = {http://eudml.org/doc/285273},
volume = {162},
year = {2004},
}

TY - JOUR
AU - José García-Cuerva
AU - A. Eduardo Gatto
TI - Boundedness properties of fractional integral operators associated to non-doubling measures
JO - Studia Mathematica
PY - 2004
VL - 162
IS - 3
SP - 245
EP - 261
AB - The main purpose of this paper is to investigate the behavior of fractional integral operators associated to a measure on a metric space satisfying just a mild growth condition, namely that the measure of each ball is controlled by a fixed power of its radius. This allows, in particular, non-doubling measures. It turns out that this condition is enough to build up a theory that contains the classical results based upon the Lebesgue measure on Euclidean space and their known extensions for doubling measures. We start by analyzing the images of the Lebesgue spaces associated to the measure. The Lipschitz spaces, defined in terms of the metric, also play a basic role. For a Euclidean space equipped with one of these measures, we also consider the so-called regular BMO space introduced by X. Tolsa. We show that it contains the image of a Lebesgue space in the appropriate limit case and also that the image of the regular BMO space is contained in a suitable Lipschitz space.
LA - eng
KW - Calderón–Zygmund theory; fractional integrals; Lipschitz spaces; BMO; non-doubling measures
UR - http://eudml.org/doc/285273
ER -

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