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Strong cosmic censorship: The nonlinear story

机译:强大的宇宙审查:非线性故事

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摘要

A satisfactory formulation of the laws of physics entails that the future evolution of a physical system should be determined from appropriate initial conditions. The existence of Cauchy horizons in solutions of the Einstein field equations is therefore problematic and expected to be an unstable artifact of general relativity. This is asserted by the strong cosmic censorship conjecture, which was recently put into question by an analysis of the linearized equations in the exterior of charged black holes in an expanding universe. Here, we numerically evolve the nonlinear Einstein-Maxwell-scalar field equations with a positive cosmological constant, under spherical symmetry, and provide strong evidence that mass inflation indeed does not occur in the near extremal regime. This shows that nonlinear effects might not suffice to save the strong cosmic censorship conjecture.
机译:令人满意的物理定律表述意味着,应根据适当的初始条件确定物理系统的未来发展。因此,爱因斯坦场方程解中柯西层位的存在是有问题的,并有望成为广义相对论的不稳定产物。这是由强大的宇宙审查推测所断言的,最近通过分析膨胀宇宙中带电黑洞外部的线性化方程,人们对此提出了质疑。在这里,我们在球对称下对具有正宇宙学常数的非线性爱因斯坦-麦克斯韦-标量场方程进行了数值演化,并提供了有力的证据表明,在极端极端情况下确实不会发生质量膨胀。这表明非线性效应可能不足以保存强大的宇宙检查假设。

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