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Construction of a tensor product algebra with a multicentric functional calculus

Published 27 May 2021 in math.FA | (2105.13026v1)

Abstract: In the multicentric calculus one takes a polynomial with simple roots as a new global variable and replaces scalar functions {\varphi} by functions f taking values in Cd with d the degree of the polynomial leading to an efficient holomorphic functional calculus for bounded operators. This calculus was extended for non-holomorphic functions, so that if A is not diagonalizable one can find a p such that p(A) is diagonalizable and apply the calculus to all matrices. This was done in [7] by creating a Banach algebra for Cd-valued continuous functions in such a way that the original functions {\varphi} appear as Gelfand transforms of f. In this paper we consider constructing a Banach algebra for functions from C2 into Cd_1 x d_2 which then likewise leads to a functional calculus for commuting pairs of matrices.

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