Topological properties of semigroup primes of a commutative ring
Abstract
A semigroup prime of a commutative ring is a prime ideal of the semigroup . One of the purposes of this paper is to study, from a topological point of view, the space of prime semigroups of . We show that, under a natural topology introduced by B. Olberding in 2010, is a spectral space (after Hochster), spectral extension of , and that the assignment induces a contravariant functor. We then relate -- in the case is an integral domain -- the topology on with the Zariski topology on the set of overrings of . Furthermore, we investigate the relationship between and the space consisting of all nonempty inverse-closed subspaces of , which has been introduced and studied in C.A. Finocchiaro, M. Fontana and D. Spirito, "The space of inverse-closed subsets of a spectral space is spectral" (submitted). In this context, we show that is a spectral retract of and we characterize when is canonically homeomorphic to , both in general and when is a Noetherian space. In particular, we obtain that, when is a B\'ezout domain, is canonically homeomorphic both to and to the space of the overrings of (endowed with the Zariski topology). Finally, we compare the space with the space of semigroup primes of the Nagata ring , providing a canonical spectral embedding which makes a spectral retract of .
Keywords
Cite
@article{arxiv.1703.10153,
title = {Topological properties of semigroup primes of a commutative ring},
author = {Carmelo A. Finocchiaro and Marco Fontana and Dario Spirito},
journal= {arXiv preprint arXiv:1703.10153},
year = {2017}
}
Comments
21 pages