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The aggregation equation with power-law kernels: ill-posedness, mass concentration and similarity solutions

Published 13 May 2010 in math.AP | (1005.2232v2)

Abstract: We study the multidimensional aggregation equation $u_t+\Div(uv)=0$, $v=-\nabla K*u$ with initial data in $\cP_2(\bRd)\cap L_{p}(\bRd)$. We prove that with biological relevant potential $K(x)=|x|$, the equation is ill-posed in the critical Lebesgue space $L_{d/(d-1)}(\bRd)$ in the sense that there exists initial data in $\cP_2(\bRd)\cap L_{d/(d-1)}(\bRd)$ such that the unique measure-valued solution leaves $L_{d/(d-1)}(\bRd)$ immediately. We also extend this result to more general power-law kernels $K(x)=|x|\alpha$, $0<\alpha<2$ for $p=p_s:=d/(d+\alpha-2)$, and prove a conjecture in Bertozzi, Laurent and Rosado [5] about instantaneous mass concentration for initial data in $\cP_2(\bRd)\cap L_{p}(\bRd)$ with $p<p_s$. Finally, we classify all the "first kind" radially symmetric similarity solutions in dimension greater than two.

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