The Spherical Hecke algebra, partition functions, and motivic integration
Abstract
This article gives a proof of the Langlands-Shelstad fundamental lemma for the spherical Hecke algebra for every unramified p-adic reductive group G in large positive characteristic. The proof is based on the transfer principle for constructible motivic integration. To carry this out, we introduce a general family of partition functions attached to the complex L-group of the unramified p-adic group G. Our partition functions specialize to Kostant's q-partition function for complex connected groups and also specialize to the Langlands L-function of a spherical representation. These partition functions are used to extend numerous results that were previously known only when the L-group is connected (that is, when the p-adic group is split). We give explicit formulas for branching rules, the inverse of the weight multiplicity matrix, the Kato-Lusztig formula for the inverse Satake transform, the Plancherel measure, and Macdonald's formula for the spherical Hecke algebra on a non-connected complex group (that is, non-split unramified p-adic group).
Keywords
Cite
@article{arxiv.1611.05773,
title = {The Spherical Hecke algebra, partition functions, and motivic integration},
author = {William Casselman and Jorge E. Cely and Thomas Hales},
journal= {arXiv preprint arXiv:1611.05773},
year = {2016}
}
Comments
45 pages