Birkhoff normal forms for Hamiltonian PDEs in their energy space

J. Bernier, B. Gr'ebert
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引用次数: 5

Abstract

We study the long time behavior of small solutions of semi-linear dispersive Hamiltonian partial differential equations on confined domains. Provided that the system enjoys a new non-resonance condition and a strong enough energy estimate, we prove that its low super-actions are almost preserved for very long times. Roughly speaking, it means that, to exchange energy, modes have to oscillate at the same frequency. Contrary to the previous existing results, we do not require the solutions to be especially smooth. They only have to live in the energy space. We apply our result to nonlinear Klein-Gordon equations in dimension d = 1 and nonlinear Schr{\"o}dinger equations in dimension d $\le$ 2.
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哈密顿偏微分方程在能量空间中的Birkhoff范式
研究了半线性色散哈密顿偏微分方程小解在受限域上的长时性。假设系统具有新的非共振条件和足够强的能量估计,我们证明了它的低超作用几乎保持了很长时间。粗略地说,这意味着要交换能量,模态必须以相同的频率振荡。与之前已有的结果相反,我们并不要求解特别光滑。它们只需要生活在能量空间。我们将所得结果应用于维数d = 1的非线性Klein-Gordon方程和维数d $\ \le$ 2的非线性Schr{\ \ ' o}dinger方程。
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