Basic Mechanisms Driving Complex Spike Dynamics in a Chemotaxis Model with Logistic Growth
نویسندگان
چکیده
Recently, Wang and Hillen [Chaos 17 (3) (2007) 037108–037108] introduced a modified Keller-Segel model with logistic growth that exhibits complex spatiotemporal dynamics of spikes. These dynamics are driven by merging of spikes on one hand, and spike insertion on the other. In this paper we analyse the basic mechanisms that initiate and sustain these events. We identify two distinguished regimes. In the first regime, a single interior spike drifts towards a boundary. This instability is responsible for spike merging. The same regime further exhibits spike insertion; we identify a fold-point bifurcation which is precursor to spike insertion event. In the second regime, we show that it is possible to stabilize a single interior spike, and we compute analytically a critical threshold which is responsible for spike stabilization. In particular, our calculation characterizes a stable spike in the Keller-Segel model with logistic growth; this is in contrast to the classical Keller-Segel model where the interior spike is known to be unstable.
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ورودعنوان ژورنال:
- SIAM Journal of Applied Mathematics
دوره 74 شماره
صفحات -
تاریخ انتشار 2014