2012/12/19 by Joaquı́n Luna-Torres, Joaquin Luna-Torres, Luna-Torres, Joaquin +2
Computer Science · Decision Sciences · Mathematics · #06B05 #18B35 #54A40 #54B30 #Advanced Algebra and Logic #FOS: Mathematics #Fixed Point Theorems Analysis #Fuzzy and Soft Set Theory #General Topology (math.GN) #math.GN #msc:06B05 #msc:18B35 #msc:54A40 #msc:54B30
paper · pdf · doi:10.48550/arxiv.1212.4793
arXiv admin note: substantial text overlap with 1207.2971
openalex publication_date 2012/12/19 · arxiv created 2013/01/07 · arxiv updated 2013/01/08 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
For a topological space it is well-known that the associated closure and interior operators provide equivalent descriptions of set-theoretic topology; but it is not generally true in other categories, consequently it makes sense to define and study the notion of interior operators I in the context of fuzzy set theory, where we can find categories in a lattice-theoretical context. Fuzzy interior operators have been studied by U. Hohle, A. Sostak and others, (1999), these works were used to describe L-topologies on a set X. More recently, M. Diker, S. Dost and A. Ugur (2009) present interior and closure operators on texture spaces in the sense of Cech, and F. G. Shi(2009) studies interior operators via L-fuzzy neighborhood systems. The aim of this paper is to propose a more general theory of variable basis fuzzy interior operators, employing both categorical tools and the lattice theoretical foundations investigated by S. E. Rodabaugh (1999), where tha lattices are usually non-complemented. furthermore, we construct some topological categories.