2021/10/19 by Peter J. Cameron, Cameron, Peter J, James E. East +9
Biochemistry, Genetics and Molecular Biology · Computer Science · #Combinatorics (math.CO) #FOS: Mathematics #Group Theory (math.GR) #RNA Research and Splicing #RNA regulation and disease #Rings and Algebras (math.RA) #semigroups and automata theory
paper · pdf · doi:10.48550/arxiv.2110.09701
openalex publication_date 2021/10/19 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
For a positive integer n, the full transformation semigroup Tn consists of all self maps of the set \1,…,n\ under composition. Any finite semigroup S embeds in some Tn, and the least such n is called the (minimum transformation) degree of S and denoted μ(S). We find degrees for various classes of finite semigroups, including rectangular bands, rectangular groups and null semigroups. The formulae we give involve natural parameters associated to integer compositions. Our results on rectangular bands answer a question of Easdown from 1992, and our approach utilises some results of independent interest concerning partitions/colourings of hypergraphs. As an application, we prove some results on the degree of a variant Tna. (The variant Sa=(S,⋆) of a semigroup S, with respect to a fixed element a∈ S, has underlying set S and operation x⋆ y=xay.) It has been previously shown that n≤ μ(Tna)≤ 2n-r if the sandwich element a has rank r, and the upper bound of 2n-r is known to be sharp if r≥ n-1. Here we show that μ(Tna)=2n-r for r≥ n-6. In stark contrast to this, when r=1, and the above inequality says n≤μ(Tna)≤ 2n-1, we show that μ(Tna)/n→1 and μ(Tna)-n→∞ as n→∞. Among other results, we also classify the 3-nilpotent subsemigroups of Tn, and calculate the maximum size of such a subsemigroup.