2016
DOI: 10.1016/j.aim.2015.11.050
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Topological Galois theory

Abstract: We introduce an abstract topos-theoretic framework for building Galois-type theories in a variety of different mathematical contexts; such theories are obtained from representations of certain atomic two-valued toposes as toposes of continuous actions of a topological group. Our framework extends Grothendieck's theory of Galois categories and allows to build Galois-type equivalences in new contexts, such as for example graph theory and finite group theory

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Cited by 10 publications
(27 citation statements)
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“…In Section 14, we show how our Y -site and a grid give rise to an ultrahomogeneous object used in Caramello's work [3].…”
Section: Table 1 Summary Of Resultsmentioning
confidence: 99%
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“…In Section 14, we show how our Y -site and a grid give rise to an ultrahomogeneous object used in Caramello's work [3].…”
Section: Table 1 Summary Of Resultsmentioning
confidence: 99%
“…The main theorem in [3] is Theorem 3.5, but we look instead at the author's Proposition 4.3, which is very close to the former theorem, and closer to our setup.…”
Section: Connection With Caramello's Ultrahomogeneous Objectsmentioning
confidence: 87%
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“…In the process of proving part (5) of Theorem 6.1, another interesting structural property of T that we shall establish is that it is isomorphic to its opposite; see Theorem 7.5. Parts (1), (3) and (4) are the most straightforward to prove, so we begin with them. (1) is an immediate consequence of the definition of T and Cayley's Theorem for semigroups.…”
Section: Homogeneous Structures Within the Semigroup Tmentioning
confidence: 99%