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Poisson Geometry, Deformation Quantisation and Group Representations / Edited by Simone Gutt, John Rawnsley, Daniel Sternheimer.

Contributor(s): Material type: TextTextSeries: London Mathematical Society Lecture Note Series ; no. 323 | London Mathematical Society Lecture Note Series ; no. 323.Publisher: Cambridge : Cambridge University Press, 2005Description: 1 online resource (370 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780511734878 (ebook)
Other title:
  • Poisson Geometry, Deformation Quantisation & Group Representations
Subject(s): Additional physical formats: Print version: : No titleDDC classification:
  • 516.36 22
LOC classification:
  • QA614.3  .P648 2005
Online resources: Summary: Poisson geometry lies at the cusp of noncommutative algebra and differential geometry, with natural and important links to classical physics and quantum mechanics. This book presents an introduction to the subject from a small group of leading researchers, and the result is a volume accessible to graduate students or experts from other fields. The contributions are: Poisson Geometry and Morita Equivalence by Bursztyn and Weinstein; Formality and Star Products by Cattaneo; Lie Groupoids, Sheaves and Cohomology by Moerdijk and Mrcun; Geometric Methods in Representation Theory by Schmid; Deformation Theory: A Powerful Tool in Physics Modelling by Sternheimer.
Item type: E-BOOKS
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IMSc Library Link to resource Available EBK12039

Title from publisher's bibliographic system (viewed on 16 Oct 2015).

Poisson geometry lies at the cusp of noncommutative algebra and differential geometry, with natural and important links to classical physics and quantum mechanics. This book presents an introduction to the subject from a small group of leading researchers, and the result is a volume accessible to graduate students or experts from other fields. The contributions are: Poisson Geometry and Morita Equivalence by Bursztyn and Weinstein; Formality and Star Products by Cattaneo; Lie Groupoids, Sheaves and Cohomology by Moerdijk and Mrcun; Geometric Methods in Representation Theory by Schmid; Deformation Theory: A Powerful Tool in Physics Modelling by Sternheimer.

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