arXiv:1204.1033 [math-ph]AbstractReferencesReviewsResources
Paragrassmann Algebras as Quantum Spaces, Part I: Reproducing Kernels
Published 2012-04-04, updated 2012-05-19Version 3
Paragrassmann algebras are given a sesquilinear form for which one subalgebra becomes a Hilbert space known as the Segal-Bargmann space. This Hilbert space as well as the ambient space of the paragrassmann algebra itself are shown to have reproducing kernels. These algebras are not isomorphic to algebras of functions so some care must be taken in defining what "evaluation at a point" corresponds to in this context. The reproducing kernel in the Segal-Bargmann space is shown to have most, though not all, of the standard properties. These quantum spaces provide non-trivial examples of spaces which have a reproducing kernel but which are not spaces of functions.
Comments: 28 pages, new title and abstract, more clarifications, more corrections, Part II forthcoming
Related articles: Most relevant | Search more
arXiv:1210.6167 [math-ph] (Published 2012-10-23)
Symmetries of finite Heisenberg groups for multipartite systems
arXiv:1508.07473 [math-ph] (Published 2015-08-29)
Generator of an abstract quantum walk
arXiv:1610.06792 [math-ph] (Published 2016-10-21)
Dirac-like operators on the Hilbert space of differential forms on manifolds with boundaries