English

The global dimension of the full transformation monoid with an appendix by V. Mazorchuk and B. Steinberg

Representation Theory 2016-01-20 v3 Group Theory Rings and Algebras

Abstract

The representation theory of the symmetric group has been intensively studied for over 100 years and is one of the gems of modern mathematics. The full transformation monoid Tn\mathfrak T_n (the monoid of all self-maps of an nn-element set) is the monoid analogue of the symmetric group. The investigation of its representation theory was begun by Hewitt and Zuckerman in 1957. Its character table was computed by Putcha in 1996 and its representation type was determined in a series of papers by Ponizovski{\u\i}, Putcha and Ringel between 1987 and 2000. From their work, one can deduce that the global dimension of CTn\mathbb C\mathfrak T_n is n1n-1 for n=1,2,3,4n=1,2,3,4. We prove in this paper that the global dimension is n1n-1 for all n1n\geq 1 and, moreover, we provide an explicit minimal projective resolution of the trivial module of length n1n-1. In an appendix with V.~Mazorchuk we compute the indecomposable tilting modules of CTn\mathbb C\mathfrak T_n with respect to Putcha's quasi-hereditary structure and the Ringel dual (up to Morita equivalence).

Keywords

Cite

@article{arxiv.1502.00959,
  title  = {The global dimension of the full transformation monoid with an appendix by V. Mazorchuk and B. Steinberg},
  author = {Benjamin Steinberg},
  journal= {arXiv preprint arXiv:1502.00959},
  year   = {2016}
}

Comments

Explicit minimal projective resolutions of the exterior powers of the standard module are computed allowing a simpler proof of the main result. Made minor corrections and added an appendix with Volodymyr Mazorchuk computing the characteristic tilting module and the Ringel dual