Article (Scientific journals)
Quantization of Poisson manifolds from the integrability of the modular function
Bonechi, Francesco; Tarlini, Marco; Ciccoli, Nicola et al.
2014In Communications in Mathematical Physics, 331 (2), p. 851–885
Peer reviewed
 

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Keywords :
Quantization; Poisson-Lie group; symplectic groupoid
Abstract :
[en] We discuss a framework for quantizing a Poisson manifold via the quantization of its symplectic groupoid, that combines the tools of geometric quantization with the results of Renault's theory of groupoid C*-algebras. This setting allows very singular polarizations. In particular we consider the case when the modular function is "multiplicatively integrable", i.e. when the space of leaves of the polarization inherits a groupoid structure. If suitable regularity conditions are satisfied, then one can define the quantum algebra as the convolution algebra of the subgroupoid of leaves satisfying the Bohr-Sommerfeld conditions. We apply this procedure to the case of a family of Poisson structures on CP_n, seen as Poisson homogeneous spaces of the standard Poisson-Lie group SU(n+1). We show that a bihamiltoniam system on CP_n defines a multiplicative integrable model on the symplectic groupoid; we compute the Bohr-Sommerfeld groupoid and show that it satisfies the needed properties for applying Renault theory. We recover and extend Sheu's description of quantum homogeneous spaces as groupoid C*-algebras.
Disciplines :
Mathematics
Author, co-author :
Bonechi, Francesco;  FLorence University
Tarlini, Marco;  Florence University
Ciccoli, Nicola;  University of Perugia
Qiu, Jian ;  University of Luxembourg > Faculty of Science, Technology and Communication (FSTC) > Mathematics Research Unit
External co-authors :
yes
Language :
English
Title :
Quantization of Poisson manifolds from the integrability of the modular function
Publication date :
2014
Journal title :
Communications in Mathematical Physics
ISSN :
0010-3616
Publisher :
Springer Science & Business Media B.V.
Volume :
331
Issue :
2
Pages :
851–885
Peer reviewed :
Peer reviewed
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since 20 December 2013

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