{ "id": "math/0601512", "version": "v4", "published": "2006-01-20T21:38:37.000Z", "updated": "2006-09-05T19:45:43.000Z", "title": "Signatures of invariant Hermitian forms on irreducible highest weight modules", "authors": [ "Wai Ling Yee" ], "comment": "Revised version", "categories": [ "math.RT" ], "abstract": "Perhaps the most important problem in representation theory in the 1970s and early 1980s was the determination of the multiplicity of composition factors in a Verma module. This problem was settled by the proof of the Kazhdan-Lusztig Conjecture which states that the multiplicities may be computed via Kazhdan-Lusztig polynomials. In this paper, we introduce signed Kazhdan-Lusztig polynomials, a variation of Kazhdan-Lusztig polynomials which encodes signature information in addition to composition factor multiplicities and Jantzen filtration level. Careful consideration of Gabber and Joseph's proof of Kazhdan and Lusztig's inductive formula for computing Kazhdan-Lusztig polynomials leads to an inductive formula for the signed Kazhdan-Lusztig polynomials. We use these polynomials to compute the signature of an invariant Hermitian form on an irreducible highest weight module. Such a formula has applications to unitarity testing.", "revisions": [ { "version": "v4", "updated": "2006-09-05T19:45:43.000Z" } ], "analyses": { "subjects": [ "22E47" ], "keywords": [ "irreducible highest weight module", "invariant hermitian form", "signed kazhdan-lusztig polynomials", "composition factor", "inductive formula" ], "note": { "typesetting": "TeX", "pages": 0, "language": "en", "license": "arXiv", "status": "editable", "adsabs": "2006math......1512Y" } } }