Tubular neighborhoods of orbits of power-logarithmic germs

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TitreTubular neighborhoods of orbits of power-logarithmic germs
Type de publicationJournal Article
Year of PublicationSubmitted
AuteursMardesic P., Resman M., Rolin J.-P, Zupanovic V.
JournalJOURNAL OF DYNAMICS AND DIFFERENTIAL EQUATIONS
Type of ArticleArticle; Early Access
ISSN1040-7294
Mots-clésDulac map, Embedding in a flow, epsilon-Neighborhoods, Formal and analytic invariants, Fractal properties of orbits, Power-logarithm asymptotic expansions, Transseries
Résumé

We consider a class of power-logarithmic germs. We call them parabolic Dulac germs, as they appear as Dulac germs (first-return germs) of hyperbolic polycycles. In view of formal or analytic characterization of such a germ f by fractal properties of several of its orbits, we study the tubular epsilon-neighborhoods of orbits of f with initial points x(0). We denote by A(f) (x(0), epsilon) the length of such a tubular epsilon-neighborhood. We show that, even if f is an analytic germ, the function epsilon bar right arrow A(f) (x(0), epsilon) does not have a full asymptotic expansion in epsilon in the scale of powers and (iterated) logarithms. Hence, this partial asymptotic expansion cannot contain necessary information for analytic classification. In order to overcome this problem, we introduce a new notion: the continuous time length of the epsilon-neighborhood A(f)(c) (x(0), epsilon). We show that this function has a full transasymptotic expansion in e in the power, iterated logarithm scale. Moreover, its asymptotic expansion extends the initial, existing part of the asymptotic expansion of the classical length epsilon bar right arrow A(f) (x(0), epsilon). Finally, we prove that this initial part of the asymptotic expansion determines the class of formal conjugacy of the Dulac germ f.

DOI10.1007/s10884-019-09812-8, Early Access Date = {NOV 2019