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Auteurs principaux: Dou, X., Jin, M., Ren, G., Sabadini, I.
Format: Preprint
Publié: 2021
Sujets:
Accès en ligne:https://arxiv.org/abs/2110.03752
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author Dou, X.
Jin, M.
Ren, G.
Sabadini, I.
author_facet Dou, X.
Jin, M.
Ren, G.
Sabadini, I.
contents In this paper we summarize some known facts on slice topology in the quaternionic case, and we deepen some of them by proving new results and discussing some examples. We then show, following [18], how this setting allows us to generalize slice analysis to the general case of functions with values in a real left alternative algebra, which includes the case of slice monogenic functions with values in Clifford algebra. Moreover, we further extend slice analysis, in one and several variables, to functions with values in a Euclidean space of even dimension. In this framework, we study the domains of slice regularity, we prove some extension properties and the validity of a Taylor expansion for a slice regular function.
format Preprint
id arxiv_https___arxiv_org_abs_2110_03752
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle A new approach to slice analysis via slice topology
Dou, X.
Jin, M.
Ren, G.
Sabadini, I.
Complex Variables
In this paper we summarize some known facts on slice topology in the quaternionic case, and we deepen some of them by proving new results and discussing some examples. We then show, following [18], how this setting allows us to generalize slice analysis to the general case of functions with values in a real left alternative algebra, which includes the case of slice monogenic functions with values in Clifford algebra. Moreover, we further extend slice analysis, in one and several variables, to functions with values in a Euclidean space of even dimension. In this framework, we study the domains of slice regularity, we prove some extension properties and the validity of a Taylor expansion for a slice regular function.
title A new approach to slice analysis via slice topology
topic Complex Variables
url https://arxiv.org/abs/2110.03752