Sharp Bohr radius involving Schwarz functions for certain classes of analytic functions

Abstract

The Bohr radius for an arbitrary class F of analytic functions of the form f(z)=Σn=0∞anzn on the unit disk D=\z∈C : |z|<1\ is the largest radius RF such that every function f∈F satisfies the inequality align* d(Σn=0∞|anzn|, |f(0)|)=Σn=1∞|anzn|≤ d(f(0), ∂ f(D)), align* for all |z|=r≤ RF , where d(0, ∂ f(D)) is the Euclidean distance. In this paper, our aim is to determine the sharp improved Bohr radius for the classes of analytic functions f satisfying differential subordination relation zf(z)/f(z) h(z) and f(z)+β zf(z)+γ z2f(z) h(z), where h is the Janowski function. We show that improved Bohr radius can be obtained for Janowski functions as root of an equation involving Bessel function of first kind. Analogues results are obtained in this paper for α-convex functions and typically real functions, respectively. All obtained results in the paper are sharp and are improved version of [Bull. Malays. Math. Sci. Soc. (2021) 44:1771-1785].

0

Turn this paper into a lesson

ArcXiv compiles a structured reading guide from this paper's metadata: plain-English importance, contributions, prerequisite concepts, which sections to read first, flashcards, and a quiz. Grounded in the abstract, never invented.

Discussion (0)

Sign in to join the discussion.

Loading comments…