A harmonic map flow associated with the standard solution of Ricci flow
Abstract
Description
Let $(\Bbb{R}^n,g(t))$, $0\le t\le T$, $n\ge 3$, be a standard solution of the Ricci flow with radially symmetric initial data $g_0$. We will extend a recent existence result of P. Lu and G. Tian and prove that for any $t_0\in [0,T)$ there exists a solution of the corresponding harmonic map flow $ϕ_t:(\Bbb{R}^n,g(t))\to (\Bbb{R}^n,g(t_0))$ satisfying $\partial ϕ_t/\partial t=Δ_{g(t),g(t_0)}ϕ_t$ of the form $ϕ_t(r,θ) =(ρ(r,t),θ)$ in polar coordinates in $\Bbb{R}^n\times (t_0,T_0)$, $ϕ_{t_0}(r,θ)=(r,θ)$, where $r=r(t)$ is the radial co-ordinate with respect to $g(t)$ and $T_0=\sup\{t_1\in (t_0,T]: \|\widetildeρ(\cdot ,t)\|_{L^{\infty}(\Bbb{R}^+)} +\|\partial\widetildeρ/\partial r(\cdot ,t)\|_{L^{\infty}(\Bbb{R}^+)} <\infty\quad\forall t_0<t\le t_1\}$ with $\widetildeρ(r,t) =\log (ρ(r,t)/r)$. We will also prove the uniqueness of solution of the harmonic map flow. We will also use the same technique to prove that the solution $u$ of the heat equation in $(Ω\setminus\{0\})\times (0,T)$ has removable singularities at $\{0\}\times (0,T)$, $Ω\subset\Bbb{R}^m$, $m\ge 3$, if and only if $|u(x,t)|=O(|x|^{2-m})$ locally uniformly on every compact subset of $(0,T)$.
21 pages
21 pages