Characterization of bi-starlike functions: A daehee polynomial approach

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Multidisciplinary Digital Publishing Institute (MDPI)

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info:eu-repo/semantics/openAccess

Özet

This research investigates the second Hankel determinant for a specific class of functions associated with the Daehee polynomial. To achieve this, we introduce new subclasses of starlike functions in the context of Daehee polynomials. In complex analysis, establishing precise bounds for coefficient estimates in bi-univalent functions is essential, as these coefficients define the fundamental properties of conformal mappings. In this study, we derive sharp bounds for coefficient estimates within new subclasses of starlike functions related to Daehee polynomials, with most of the obtained limits demonstrating high accuracy. This work aims to inspire further exploration of rigorous bounds for analytic functions associated with innovative mapping domains. © 2024 by the authors.

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best extimates, bi-univalent functions, Daehee polynomial, Hankel determinant, starlike functions

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Symmetry

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Cilt

16

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12

Künye

Shaba T.G., Araci S., Adebesin B.O., Usta F. & Khan B. (2024). Characterization of bi-starlike functions: A daehee polynomial approach. Symmetry. ( 16, 12.). https://doi.org/10.3390/sym16121640.

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