Ter Haar Lotte, Bezares Miguel, Crisostomi Marco, Barausse Enrico, Palenzuela Carlos
SISSA, Via Bonomea 265, 34136 Trieste, Italy and INFN Sezione di Trieste, via Valerio 2, 34127 Trieste, Italy.
IFPU-Institute for Fundamental Physics of the Universe, Via Beirut 2, 34014 Trieste, Italy.
Phys Rev Lett. 2021 Mar 5;126(9):091102. doi: 10.1103/PhysRevLett.126.091102.
Gravitational theories differing from general relativity may explain the accelerated expansion of the Universe without a cosmological constant. However, to pass local gravitational tests, a "screening mechanism" is needed to suppress, on small scales, the fifth force driving the cosmological acceleration. We consider the simplest of these theories, i.e., a scalar-tensor theory with first-order derivative self-interactions, and study isolated (static and spherically symmetric) nonrelativistic and relativistic stars. We produce screened solutions and use them as initial data for nonlinear numerical evolutions in spherical symmetry. We find that these solutions are stable under large initial perturbations, as long as they do not cause gravitational collapse. When gravitational collapse is triggered, the characteristic speeds of the scalar evolution equation diverge, even before apparent black-hole or sound horizons form. This casts doubts on whether the dynamical evolution of screened stars may be predicted in these effective field theories.
不同于广义相对论的引力理论或许能够在没有宇宙学常数的情况下解释宇宙的加速膨胀。然而,为了通过局部引力测试,需要一种“屏蔽机制”来在小尺度上抑制驱动宇宙加速的第五种力。我们考虑这些理论中最简单的一种,即具有一阶导数自相互作用的标量-张量理论,并研究孤立的(静态且球对称的)非相对论性和相对论性恒星。我们得出屏蔽解,并将其用作球对称非线性数值演化的初始数据。我们发现,只要这些解不会导致引力坍缩,它们在大的初始微扰下就是稳定的。当引发引力坍缩时,即使在明显的黑洞或声视界形成之前,标量演化方程的特征速度也会发散。这让人怀疑在这些有效场论中是否能够预测屏蔽恒星的动力学演化。