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Self tuning scalar fields in spherically symmetric spacetimes

机译:球对称时空中的自调谐标量场

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We search for self tuning solutions to the Einstein-scalar field equations for the simplest class of 'Fab-Four' models with constant potentials. We first review the conditions under which self tuning occurs in a cosmological spacetime, and by introducing a small modification to the original theory introducing the second and third Galileon terms show how one can obtain de Sitter states where the expansion rate is independent of the vacuum energy. We then consider whether the same self tuning mechanism can persist in a spherically symmetric inhomogeneous spacetime. We show that there are no asymptotically flat solutions to the field equations in which the vacuum energy is screened, other than the trivial one (Minkowski space). We then consider the possibility of constructing Schwarzschild de Sitter spacetimes for the modified Fab Four plus Galileon theory. We argue that the only model that can successfully screen the vacuum energy in both an FLIRW and Schwarzschild de Sitter spacetime is one containing 'John' similar to G(nu)(mu)partial derivative(mu)phi partial derivative(nu)phi and a canonical kinetic term similar to partial derivative(alpha)phi partial derivative(alpha)phi. This behaviour was first observed in [1]. The screening mechanism, which requires redundancy of the scalar field equation in the 'vacuum', fails for the 'Paul' term in an inhomogeneous spacetime.
机译:我们寻找最简单的具有恒定电势的“ Fab-Four”模型类别的爱因斯坦标量场方程的自整定解。我们首先回顾在宇宙时空中发生自整定的条件,并通过对原始理论进行少量修改,引入第二和第三伽利略项来说明人们如何获得de Sitter态,其中膨胀率与真空能无关。 。然后,我们考虑是否可以在球形对称的不均匀时空中保持相同的自调整机制。我们表明,除了琐碎的场(Minkowski空间)之外,对于其中屏蔽了真空能的场方程,没有渐近平的解。然后,我们考虑为改进的Fab四加Galileon理论构造Schwarzschild de Sitter时空的可能性。我们认为,唯一能够成功筛选FLIRW和Schwarzschild de Sitter时空中的真空能的模型是一个包含'John'的模型,类似于G(nu)(μ)偏导数(mu)phi部分导数(nu)phi和类似于偏导数phi的规范动力学术语。这种行为最早在[1]中观察到。筛选机制需要在“真空”中标量场方程的冗余,但在非均匀时空中对于“ Paul”而言是失败的。

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