A nuclear Weyl algebra
A bilinear form on a possibly graded vector space V defines a graded Poisson structure on its graded symmetric algebra together with a star product quantizing it. This gives a model for the Weyl algebra in an algebraic framework, only requiring a field of characteristic zero. When passing to R or C...
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Published in: | Journal of geometry and physics Vol. 81; pp. 10 - 46 |
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01-07-2014
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Abstract | A bilinear form on a possibly graded vector space V defines a graded Poisson structure on its graded symmetric algebra together with a star product quantizing it. This gives a model for the Weyl algebra in an algebraic framework, only requiring a field of characteristic zero. When passing to R or C one wants to add more: the convergence of the star product should be controlled for a large completion of the symmetric algebra. Assuming that the underlying vector space carries a locally convex topology and the bilinear form is continuous, we establish a locally convex topology on the Weyl algebra such that the star product becomes continuous. We show that the completion contains many interesting functions like exponentials. The star product is shown to converge absolutely and provides an entire deformation. We show that the completion has an absolute Schauder basis whenever V has an absolute Schauder basis. Moreover, the Weyl algebra is nuclear iff V is nuclear. We discuss functoriality, translational symmetries, and equivalences of the construction. As an example, we show how the Peierls bracket in classical field theory on a globally hyperbolic spacetime can be used to obtain a local net of Weyl algebras. |
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AbstractList | A bilinear form on a possibly graded vector space V defines a graded Poisson structure on its graded symmetric algebra together with a star product quantizing it. This gives a model for the Weyl algebra in an algebraic framework, only requiring a field of characteristic zero. When passing to R or C one wants to add more: the convergence of the star product should be controlled for a large completion of the symmetric algebra. Assuming that the underlying vector space carries a locally convex topology and the bilinear form is continuous, we establish a locally convex topology on the Weyl algebra such that the star product becomes continuous. We show that the completion contains many interesting functions like exponentials. The star product is shown to converge absolutely and provides an entire deformation. We show that the completion has an absolute Schauder basis whenever V has an absolute Schauder basis. Moreover, the Weyl algebra is nuclear iff V is nuclear. We discuss functoriality, translational symmetries, and equivalences of the construction. As an example, we show how the Peierls bracket in classical field theory on a globally hyperbolic spacetime can be used to obtain a local net of Weyl algebras. |
Author | Waldmann, Stefan |
Author_xml | – sequence: 1 givenname: Stefan surname: Waldmann fullname: Waldmann, Stefan email: Stefan.Waldmann@mathematik.uni-wuerzburg.de organization: Institut für Mathematik, Lehrstuhl für Mathematik X, Universität Würzburg, Campus Hubland Nord, Emil-Fischer-Straße 31, 97074 Würzburg, Germany |
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Cites_doi | 10.2307/1970553 10.1007/s00220-009-0880-7 10.1016/0003-4916(78)90224-5 10.4171/dm/26 10.1007/PL00005563 10.1098/rspa.1952.0158 10.2140/pjm.2008.235.93 10.1016/S0393-0440(98)00007-2 10.1007/BF01609839 10.4171/037 10.1016/j.bulsci.2003.12.002 10.1007/s00023-004-0171-y 10.1007/s11005-007-0208-5 10.1007/s00220-007-0190-x 10.1016/j.jfa.2008.02.011 10.1007/s10977-005-3464-0 10.1090/conm/315/05472 10.1007/s00220-003-0815-7 |
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Keywords | Globally hyperbolic spacetime Deformation quantization Star products Weyl algebra Locally convex algebra |
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SubjectTerms | Deformation quantization Globally hyperbolic spacetime Locally convex algebra Star products Weyl algebra |
Title | A nuclear Weyl algebra |
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