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Verblunsky coefficients related with periodic real sequences and associated measures on the unit circle
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It is known that given a pair of real sequences View the MathML source, with View the MathML source a positive chain sequence, we can associate a unique nontrivial probability measure μ   on the unit circle. Precisely, the measure is such that the corresponding Verblunsky coefficients View the MathML source are given by the relation
View the MathML source
where ρ0=1, View the MathML source, n≥1 and View the MathML source is the minimal parameter sequence of View the MathML source. In this paper we consider the space, denoted by 712bcc6d4" title="Click to view the MathML source">Np, of all nontrivial probability measures such that the associated real sequences View the MathML source and View the MathML source are periodic with period p  , for p∈N. By assuming an appropriate metric on the space of all nontrivial probability measures on the unit circle, we show that there exists a homeomorphism gp between the metric subspaces 712bcc6d4" title="Click to view the MathML source">Np and Vp, where Vp denotes the space of nontrivial probability measures with associated p  -periodic Verblunsky coefficients. Moreover, it is shown that the set Fp of fixed points of gp is exactly Vp∩Np and this set is characterized by a (p−1)-dimensional submanifold of Rp. We also prove that the study of probability measures in 712bcc6d4" title="Click to view the MathML source">Np is equivalent to the study of probability measures in Vp. Furthermore, it is shown that the pure points of measures in 712bcc6d4" title="Click to view the MathML source">Np are, in fact, zeros of associated para-orthogonal polynomials of degree p  . We also look at the essential support of probability measures in the limit periodic case, i.e., when the sequences View the MathML source and View the MathML source are limit periodic with period p. Finally, we give some examples to illustrate the results obtained.

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