A double Hall algebra approach to affine quantum Schur-Weyl theory /

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Bibliographic Details
Author / Creator:Deng, Bangming.
Imprint:Cambridge ; New York : Cambridge University Press, 2012.
Description:1 online resource (viii, 207 pages)
Language:English
Series:London Mathematical Society lecture note series ; 401
London Mathematical Society lecture note series ; 401.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11831503
Hidden Bibliographic Details
Other authors / contributors:Du, Jie.
Fu, Qiang.
ISBN:9781139226660
1139226665
9781139780094
1139780093
9781107608603
1107608600
Notes:Includes bibliographical references and index.
Print version record.
Summary:The first book of its kind to present an algebraic approach to affine q-Schur algebras and affine quantum Schur-Weyl theory.
Other form:Print version: Deng, Bangming. Double Hall algebra approach to affine quantum Schur-Weyl theory. Cambridge ; New York : Cambridge University Press, 2012 1107608600
Description
Summary:The theory of Schur-Weyl duality has had a profound influence over many areas of algebra and combinatorics. This text is original in two respects: it discusses affine q-Schur algebras and presents an algebraic, as opposed to geometric, approach to affine quantum Schur-Weyl theory. To begin, various algebraic structures are discussed, including double Ringel-Hall algebras of cyclic quivers and their quantum loop algebra interpretation. The rest of the book investigates the affine quantum Schur-Weyl duality on three levels. This includes the affine quantum Schur-Weyl reciprocity, the bridging role of affine q-Schur algebras between representations of the quantum loop algebras and those of the corresponding affine Hecke algebras, presentation of affine quantum Schur algebras and the realisation conjecture for the double Ringel-Hall algebra with a proof of the classical case. This text is ideal for researchers in algebra and graduate students who want to master Ringel-Hall algebras and Schur-Weyl duality.
Physical Description:1 online resource (viii, 207 pages)
Bibliography:Includes bibliographical references and index.
ISBN:9781139226660
1139226665
9781139780094
1139780093
9781107608603
1107608600