Duality Theory for p-th Power Factorable Operators

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The class of p-th power factorable operators was developed in 2008 by Okada, Ricker and Sánchez Pérez. This is a family of Banach space valued (linear and continuous) operators defined on a Banach function space over a finite measure, which can be extended to the p-th power space of its original domain. This class of operators has been applied to obtain generaliztions of Maurey-Rosenthal's Theorem, and also to the study of the largest (by inclusion) p-convex domain of the convolution operators and the Fourier transform. Here we develop the duality of this class and obtain generalizations of these results by means of factorizations through p-convex and q'-concave spaces, these spaces have optimal properties in its domain and range, respectively. This technique is very useful, since now we have shown that these properties are invariant by complex interpolation and also we see how we can easily apply to kernel operators, as the Laplace transform. This memoir arises from the Ph.D. thesis of the author presented at the Universitat Politècnica de València and supervised by the professors Fernando Mayoral Masa and Enrique A. Sánchez Pérez, with whom the author is greatly indebted.

Autorentext

He was born in Santiago de Chile on November 10, 1975. Her parents emigrated to Spain a year later. In 1999 he got his degree in maths at the University of Valencia. Then he started working in a IT company, where he grew professionally as a project manager. In 2009 he decided to change his career to devote to research, and obtain his Ph.D. in 2013.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639518436
    • Sprache Englisch
    • Größe H220mm x B150mm x T11mm
    • Jahr 2013
    • EAN 9783639518436
    • Format Kartonierter Einband
    • ISBN 3639518438
    • Veröffentlichung 02.10.2013
    • Titel Duality Theory for p-th Power Factorable Operators
    • Autor Orlando Galdames Bravo
    • Untertitel and Kernel Operators
    • Gewicht 256g
    • Herausgeber Scholars' Press
    • Anzahl Seiten 160
    • Genre Mathematik

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