arXiv · 1307.2081
Optimal decay rate of the bipolar Euler-Poisson system with damping in $\mathbb{R}^3$
Abstract
By rewriting a bipolar Euler-Poisson equations with damping into an Euler equation with damping coupled with an Euler-Poisson equation with damping, and using a new spectral analysis, we obtain the optimal decay results of the solutions in $L^2$-norm, which improve theose in \cite{Li3, Wu3}. More precisely, the velocities $u_1,u_2$ decay at the $L^2-$rate $(1+t)^{-{5}{4}}$, which is faster than the normal $L^2-$rate $(1+t)^{-{3}{4}}$ for the Heat equation and the Navier-Stokes equations. In addition, the disparity of two densities $ρ_1-ρ_2$ and the disparity of two velocities $u_1-u_2$ decay at the $L^2$-rate $(1+t)^{-2}$.
Explore related subjects
Keep this discovery
Zhigang Wu, Yuming Qun. 2013-07-08. Optimal decay rate of the bipolar Euler-Poisson system with damping in $\mathbb{R}^3$. https://arxiv.org/abs/1307.2081
Cite the original work for its findings. Save a collection to share your selection of sources.