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Hamiltonian Dynamics of Doubly-Foliable Space-Times

机译:双叶时空的哈密顿动力学

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The 2 + 1 + 1 decomposition of space-time is useful in monitoring the temporal evolution of gravitational perturbations/waves in space-times with a spatial direction singled-out by symmetries. Such an approach based on a perpendicular double foliation has been employed in the framework of dark matter and dark energy-motivated scalar-tensor gravitational theories for the discussion of the odd sector perturbations of spherically-symmetric gravity. For the even sector, however, the perpendicularity has to be suppressed in order to allow for suitable gauge freedom, recovering the 10th metric variable. The 2 + 1 + 1 decomposition of the Einstein–Hilbert action leads to the identification of the canonical pairs, the Hamiltonian and momentum constraints. Hamiltonian dynamics is then derived via Poisson brackets.
机译:时空的2 +1 +1分解可用于监视时空中的重力扰动/波的时间演化,其中空间方向由对称性选出。这种基于垂直双叶的方法已经在暗物质和暗能量驱动的标量张量引力理论的框架中采用,用于讨论球对称重力的奇数扇区扰动。但是,对于偶数扇区,必须抑制垂直度,以允许适当的规格自由度,以恢复第10个度量标准变量。爱因斯坦-希尔伯特动作的2 +1 + 1分解导致对正典对,哈密顿量和动量约束的识别。然后通过泊松括号推导出哈密顿动力学。

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