论文标题

高度紧凑的中子星和筛查机制。 I.平衡与稳定性

Highly compact neutron stars and screening mechanisms. I. Equilibrium and stability

论文作者

de Aguiar, Bernardo F., Mendes, Raissa F. P.

论文摘要

改良的重力理论为黑暗能源提供可行的模型通常依赖于在高密度环境中筛选其效果的机制。从这个角度来看,似乎一旦满足太阳系约束,这些理论将预测(非常密集的)中子星的微不足道现象学。在这项工作中,我们探讨了这样一个事实,即在标量调整理论中,自由程度并不是单独的质量密度,而是与能量摩托张量的痕迹相吻合 - 随着中性星星的密度和压力累积,它可能会增加并最终改变符号,并在中子星的核心中累积 - 并研究是否会在最合理的星星中占一定程度的不弥补。为此,我们在具有筛选机制的理论中构建具有现实状态方程的中子星溶液,并在径向扰动下研究其稳定性。特别是,我们发现在变色龙模型中可以存在具有未经核心的核心的稳定解决方案,而对于环境依赖的DILATON模型,可以发现大量新的标量平衡解决方案,其中一些可以稳定。

Modified theories of gravity that offer viable models for dark energy often rely on mechanisms that screen their effects in high density environments. From this perspective, it would appear that, once solar system constraints are satisfied, these theories would predict a trivial phenomenology for (much denser) neutron stars. In this work we explore the fact that in scalar-tensor theories the scalar degree of freedom does not couple to the mass density alone, but to the trace of the energy-momentum tensor - which can increase and eventually change sign as density and pressure build up in the core of neutron stars -, and investigate whether there could be a partial unscreening of the scalar field inside the most compact stars found in Nature. For this purpose, we construct neutron star solutions with realistic equations of state in theories with screening mechanisms and study their stability under radial perturbations. In particular, we find that stable solutions with a unscreened core can exist in chameleon models, while for the environmentally-dependent dilaton model a wealth of new, scalarized equilibrium solutions are found, some of which can be stable.

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