1964
DOI: 10.4064/fm-54-2-125-133
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Convergence functions and their related topologies

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Cited by 77 publications
(43 citation statements)
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“…Let X be a nonempty set and F(X) the collection of all filters on X, a subset F of F(X) × X is called a filter-theoretical convergence relation [16] if (1) ([x], x) ∈ F for all x ∈ X, where [x] is the principle ultrafilter generated by the singleton {x};…”
Section: M-scott Convergencementioning
confidence: 99%
“…Let X be a nonempty set and F(X) the collection of all filters on X, a subset F of F(X) × X is called a filter-theoretical convergence relation [16] if (1) ([x], x) ∈ F for all x ∈ X, where [x] is the principle ultrafilter generated by the singleton {x};…”
Section: M-scott Convergencementioning
confidence: 99%
“…This pseudo-difference map was used in [12] to determine the group of lattice automorphisms of the lattice of convergence structures where a slightly different definition was used for a convergence structure corresponding to the definition used by Kent [8]. THEOREM …”
Section: S^2 G R(α ) Since ^X π ^2 ί #(#) and Similarly Gf X G S(x) mentioning
confidence: 99%
“…Then C(X) with this order becomes a complete, distributive lattice [7,8] in which for any {q 3 -1 j eJ}, a subset of C(X), (Vqj)(x) = Γiq 3 (x)(jeJ) and (Λffy)(α?) = Ugy(&)(ie J).…”
mentioning
confidence: 99%
“…All convergence statements will be formulated in terms of filters rather than nets. For an introduction to convergence functions, the reader may consult D. C. Kents's paper [9]. Let L be any lattice, partially ordered by an order relation <.…”
mentioning
confidence: 99%