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The Orbit Method in Geometry and Physics

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Cover of 'The Orbit Method in Geometry and Physics'

Table of Contents

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    Book Overview
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    Chapter 1 A Principle of Variations in Representation Theory
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    Chapter 2 Finite Group Actions on Poisson Algebras
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    Chapter 3 Representations of Quantum Tori and G -bundles on Elliptic Curves
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    Chapter 4 Dixmier Algebras for Classical Complex Nilpotent Orbits via Kraft-Procesi Models I
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    Chapter 5 Brèves remarques sur l’œuvre de A. A. Kirillov
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    Chapter 6 Gerbes of Chiral Differential Operators. III
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    Chapter 7 Defining Relations for the Exceptional Lie Superalgebras of Vector Fields
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    Chapter 8 Schur-Weyl Duality and Representations of Permutation Groups
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    Chapter 9 Quantization of Hypersurface Orbital Varieties in sl n
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    Chapter 10 Generalization of a Theorem of Waldspurger to Nice Representations
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    Chapter 11 Two More Variations on the Triangular Theme
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    Chapter 12 The Generalized Cayley Map from an Algebraic Group to its Lie Algebra
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    Chapter 13 Geometry of GL n (ℂ) at Infinity: Hinges, Complete Collineations,Projective Compactifications, and Universal Boundary
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    Chapter 14 Why Would Multiplicities be Log-Concave?
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    Chapter 15 Point Processes Related to the Infinite Symmetric Group
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    Chapter 16 Some Toric Manifolds and a Path Integral
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    Chapter 17 Projective Schur Functions as Bispherical Functions on Certain Homogeneous Superspaces
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    Chapter 18 Maximal Subalgebras of the Classical Linear Lie Superalgebras
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Title
The Orbit Method in Geometry and Physics
Published by
Birkhäuser Boston, December 2012
DOI 10.1007/978-1-4612-0029-1
ISBNs
978-1-4612-6580-1, 978-1-4612-0029-1
Authors

Christian Duval, Laurent Guieu, Valentin Ovsienko

Editors

Duval, Christian, Ovsienko, Valentin, Guieu, Laurent

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Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 1 100%
Readers by discipline Count As %
Mathematics 1 100%