
arXiv: 1602.00760
The theory of positive kernels and associated reproducing kernel Hilbert spaces, especially in the setting of holomorphic functions, has been an important tool for the last several decades in a number of areas of complex analysis and operator theory. An interesting generalization of holomorphic functions, namely free noncommutative functions (e.g., functions of square-matrix arguments of arbitrary size satisfying additional natural compatibility conditions), is now an active area of research, with motivation and applications from a variety of areas (e.g., noncommutative functional calculus, free probability, and optimization theory in linear systems engineering). The purpose of this article is to develop a theory of positive kernels and associated reproducing kernel Hilbert spaces for the setting of free noncommutative function theory.
71 pages
Mathematics - Operator Algebras, Functions whose values are linear operators (operator- and matrix-valued functions, etc., including analytic and meromorphic ones), Noncommutative function spaces, completely positive and completely bounded maps, Functional Analysis (math.FA), Mathematics - Functional Analysis, contractive multiplier, 47B32, 47A60, Operator spaces (= matricially normed spaces), FOS: Mathematics, free noncommutative function, Hilbert spaces with reproducing kernels (= (proper) functional Hilbert spaces, including de Branges-Rovnyak and other structured spaces), Operator Algebras (math.OA), reproducing kernel Hilbert space
Mathematics - Operator Algebras, Functions whose values are linear operators (operator- and matrix-valued functions, etc., including analytic and meromorphic ones), Noncommutative function spaces, completely positive and completely bounded maps, Functional Analysis (math.FA), Mathematics - Functional Analysis, contractive multiplier, 47B32, 47A60, Operator spaces (= matricially normed spaces), FOS: Mathematics, free noncommutative function, Hilbert spaces with reproducing kernels (= (proper) functional Hilbert spaces, including de Branges-Rovnyak and other structured spaces), Operator Algebras (math.OA), reproducing kernel Hilbert space
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