Semisimple orbits of Lie algebras and card shuffling measures on Coxeter groups
Jason Fulman
Abstract
Solomon's descent algebra is used to define a family of signed measures M(W,x) for a finite Coxeter group W and non-zero x. The measures corresponding to W of types A and B are known to arise from the theory of card shuffling and to be related to the Poincare-Birkhoff-Witt theorem and splittings of Hochschild homology. Formulas for these measures are obtained in special cases. The eigenvalues of the associated Markov chains are computed. By elementary algebraic group theory, choosing a random semisimple orbit on a Lie algebra corresponding to a finite group of Lie type GF induces a measure on the conjugacy classes of the Weyl group W of GF. It is conjectured that this measure on conjugacy classes is equal to the measure arising from M(W,q) (and further that M(W,q) is non-negative on all elements of W). This conjecture is proved for all types for the identity conjugacy class of W, and is confirmed for all conjugacy classes for W of types A, B, and C.
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