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Global existence and asymptotic behavior of classical solutions to a parabolic-elliptic chemotaxis system with logistic source on ℝN

2016/08/05 by Salako, Rachidi, Shen, Wenxian · 1 citation
#Analysis of PDEs (math.AP) #Dynamical Systems (math.DS) #FOS: Mathematics #Functional Analysis (math.FA)

paper · doi:10.48550/arxiv.1608.02031

Abstract

In the current paper, we consider the following parabolic-elliptic semilinear Keller-Segel model on ℝN, \begincases ut=∇⋅ (∇ u-χu∇ v)+a u -b u2, x∈ℝN, tgt;0\cr 0=(Δ- I)v+ u, x∈ℝN, tgt;0, \endcases where χ>0, a≥ 0, b> 0 are constant real numbers and N is a positive integer. We first prove the local existence and uniqueness of classical solutions (u(x,t;u0),v(x,t;u0)) with u(x,0;u0)=u0(x) for various initial functions u0(x). Next, under some conditions on the constants a, b, χ and the dimension N, we prove the global existence and boundedness of classical solution (u(x,t;u0),v(x,t;u0)) for given initial functions u0(x). Finally, we investigate the asymptotic behavior of the global solutions with strictly positive initial functions or nonnegative compactly supported initial functions. Under some conditions on the constants a, b, χ and the dimension N, we show that for every strictly positive initial function u0(⋅), limt→∞ supx∈ℝN [|u(x,t;u0)-(a)/(b)|+|v(x,t;u0)-(a)/(b)|]=0, and that for every nonnegative initial function u0(⋅) with non-empty and compact support \rm supp(u0), there are 0c\rm up^*(u0).

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