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SU3 coherent state operators and invariant correlation functions and their quantum group counterparts

H. Sazdjian, Y. S. Stanev, I. T. Todorov

hep-tharXiv:hep-th/9409027

Abstract

Coherent state operators (CSO) are defined as operator valued functions on G=SL(n,C), homogeneous with respect to right multiplication by lower triangular matrices. They act on a model space containing all holomorphic finite dimensional representations of G with multiplicity 1. CSO provide an analytic tool for studying G invariant 2- and 3-point functions, which are written down in the case of SU3. The quantum group deformation of the construction gives rise to a non-commutative coset space. We introduce a "standard" polynomial basis in this space (related to but not identical with the Lusztig canonical basis) which is appropriate for writing down Uq(sl3) invariant 2-point functions for representaions of the type (λ,0) and (0,λ). General invariant 2-point functions are written down in a mixed Poincaré-Birkhoff-Witt type basis.

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