Published 2017 | Version Submitted
Journal Article Open

Makarov's principle for the Bloch unit ball

Abstract

Makarov's principle relates three characteristics of Bloch functions that resemble the variance of a Gaussian: asymptotic variance, the constant in Makarov's law of iterated logarithm and the second derivative of the integral means spectrum at the origin. While these quantities need not be equal in general, we show that the universal bounds agree if we take the supremum over the Bloch unit ball. For the supremum (of either of these quantities), we give the estimate Σ^2_B < min(0.9, Σ^2), where Σ^2 is the analogous quantity associated to the unit ball in the L∞ norm on the Bloch space. This improves on the upper bound in Pommerenke's estimate 0.685^2 < Σ^2_B ⩽ 1.

Additional Information

© 2017 Russian Academy of Sciences (DoM), London Mathematical Society, Turpion Ltd. Received 1 May 2016. The first author was supported by the Academy of Finland, project nos. 271983 and 273458. The second author was supported by the RFBR and the government of the Republic of Tatarstan, project nos. 14-01-00351 and 15-41-02433.

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Additional details

Identifiers

Eprint ID
78065
Resolver ID
CaltechAUTHORS:20170609-134523950

Related works

Funding

Academy of Finland
271983
Academy of Finland
273458
Russian Foundation for Basic Research
Republic of Tatarstan
14-01-00351
Republic of Tatarstan
15-41-02433

Dates

Created
2017-06-09
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Updated
2021-11-15
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