AbstractNecessary and sufficient conditions for the analytic coefficients of the complex linear differential equation(†)f(k)+ak−1(z)f(k−1)+⋯+a1(z)f′+a0(z)f=ak(z) are found such that all solutions satisfy σ(f):=lim supr→1−log+T(r,f)−log(1−r)⩽α. Moreover, estimates for the number of linearly independent solutions of maximal growth are found in terms of the growth of the coefficients. In addition, sufficient conditions for the coefficients such that the zero sequence {zn} of any non-trivial solution f of (†) with ak≡0 satisfies ∑(1−|zn|)α+1<∞ are found. Several non-trivial examples are given in order to show that the established results are in a sense sharp
Abstract. The basic idea of this paper is to consider fixed points of solutions of the differential ...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
AbstractWe consider the complex differential equations of the formAk(z)f(k)+Ak−1(z)f(k−1)+⋯+A1(z)f′+...
In this article, we study the growth of solutions to complex higher-order linear differential equat...
The $ [p, q] $-order of growth of solutions of the following linear differential equations $ (**) $ ...
This paper is devoted to studying growth of solutions of linear differential equations of type f(k)+...
This paper is devoted to studying the growth of solutions of the higher order nonhomogeneous linear ...
In this paper, we investigate the growth of solutions of the differential equation $$ f^{(k)}+A_{k-1...
In this article we study the growth of solutions of linear differential equations with analytic coe...
Abstract In this paper, we investigate the growth and fixed points of solutions of higher-order line...
AbstractWe treat the linear differential equation (∗)f(k)+A(z)f=0, wherek≧2 is an integer andA(z) is...
Two methods are used to nd growth estimates (in terms of the p-characteristic) for the analytic solu...
Abstract. In this paper, we investigate the growth of solutions to the differ-ential equation f (k) ...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
Abstract. The basic idea of this paper is to consider fixed points of solutions of the differential ...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
AbstractWe consider the complex differential equations of the formAk(z)f(k)+Ak−1(z)f(k−1)+⋯+A1(z)f′+...
In this article, we study the growth of solutions to complex higher-order linear differential equat...
The $ [p, q] $-order of growth of solutions of the following linear differential equations $ (**) $ ...
This paper is devoted to studying growth of solutions of linear differential equations of type f(k)+...
This paper is devoted to studying the growth of solutions of the higher order nonhomogeneous linear ...
In this paper, we investigate the growth of solutions of the differential equation $$ f^{(k)}+A_{k-1...
In this article we study the growth of solutions of linear differential equations with analytic coe...
Abstract In this paper, we investigate the growth and fixed points of solutions of higher-order line...
AbstractWe treat the linear differential equation (∗)f(k)+A(z)f=0, wherek≧2 is an integer andA(z) is...
Two methods are used to nd growth estimates (in terms of the p-characteristic) for the analytic solu...
Abstract. In this paper, we investigate the growth of solutions to the differ-ential equation f (k) ...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
Abstract. The basic idea of this paper is to consider fixed points of solutions of the differential ...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...
summary:In this paper we discuss the growth of solutions of the higher order nonhomogeneous linear d...