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自洽宇宙学模型中的黑洞稳定性和引力波速度。

Stability of Black Holes and the Speed of Gravitational Waves within Self-Tuning Cosmological Models.

机构信息

Laboratoire de Physique Théorique, CNRS, Université Paris-Sud, Université Paris-Saclay, F-91405 Orsay Cedex, France.

UPMC-CNRS, UMR7095, Institut d'Astrophysique de Paris, GReCO, 98bis Boulevard Arago, F-75014 Paris, France.

出版信息

Phys Rev Lett. 2018 Jun 15;120(24):241101. doi: 10.1103/PhysRevLett.120.241101.

Abstract

The gravitational wave event GW170817 together with its electromagnetic counterparts constrains the speed of gravity to be extremely close to that of light. We first show, on the example of an exact Schwarzschild-de Sitter solution of a specific beyond-Horndeski theory, that imposing the strict equality of these speeds in the asymptotic homogeneous Universe suffices to guarantee so even in the vicinity of the black hole, where large curvature and scalar-field gradients are present. We also find that the solution is stable in a range of the model parameters. We finally show that an infinite class of beyond-Horndeski models satisfying the equality of gravity and light speeds still provides an elegant self-tuning: the very large bare cosmological constant entering the Lagrangian is almost perfectly counterbalanced by the energy-momentum tensor of the scalar field, yielding a tiny observable effective cosmological constant.

摘要

引力波事件 GW170817 及其电磁对应体限制了重力速度极其接近光速。我们首先以特定超越 Horndeski 理论的精确 Schwarzschild-de Sitter 解为例表明,在渐近均匀宇宙中严格强制这些速度相等足以保证即使在黑洞附近也是如此,因为那里存在大曲率和标量场梯度。我们还发现该解在模型参数的一个范围内是稳定的。最后我们表明,满足重力和光速相等的一类超越 Horndeski 模型仍然提供了一种优雅的自调节:进入拉格朗日的巨大裸宇宙常数几乎被标量场的能量-动量张量完全抵消,产生了微小的可观测有效宇宙常数。

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