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AuthorBilley, Sara. author
TitleSingular Loci of Schubert Varieties [electronic resource] / by Sara Billey, V. Lakshmibai
ImprintBoston, MA : Birkhรคuser Boston : Imprint: Birkhรคuser, 2000
Connect tohttp://dx.doi.org/10.1007/978-1-4612-1324-6
Descript XII, 251 p. online resource

SUMMARY

"Singular Loci of Schubert Varieties" is a unique work at the crossroads of representation theory, algebraic geometry, and combinatorics. Over the past 20 years, many research articles have been written on the subject in notable journals. In this work, Billey and Lakshmibai have recreated and restructured the various theories and approaches of those articles and present a clearer understanding of this important subdiscipline of Schubert varieties - namely singular loci. The main focus, therefore, is on the computations for the singular loci of Schubert varieties and corresponding tangent spaces. The methods used include standard monomial theory, the nil Hecke ring, and Kazhdan-Lusztig theory. New results are presented with sufficient examples to emphasize key points. A comprehensive bibliography, index, and tables - the latter not to be found elsewhere in the mathematics literature - round out this concise work. After a good introduction giving background material, the topics are presented in a systematic fashion to engage a wide readership of researchers and graduate students


CONTENT

1. Introduction -- 2. Generalities on G/B and G/Q -- 3. Specifics for the Classical Groups -- 4. The Tangent Space and Smoothness -- 5. Root System Description of T(w, ?) -- 6. Rational Smoothness and Kazhdan-Lusztig Theory -- 7. Nil-Hecke Ring and the Singular Locus of X(w) -- 8. Patterns, Smoothness and Rational Smoothness -- 9. Minuscule and cominuscule G/P -- 10. Rank Two Results -- 11. Related Combinatorial Results -- 12. Related Varieties -- 13. Addendum


Mathematics Algebraic geometry Topological groups Lie groups Differential geometry Combinatorics Mathematics Algebraic Geometry Topological Groups Lie Groups Combinatorics Differential Geometry



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