Instabilities in modified theories of gravity

E. Arbuzova
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引用次数: 2

Abstract

The review is devoted to consideration of possible observational consequences of modified gravity theories, suggested for explanation of the contemporary accelerated expansion of the universe. The major attention is paid to F(R)-models. It is shown that in systems with rising energy density high frequency and large amplitude oscillations of the curvature scalar, R(t), are induced. These oscillations lead to the production of elementary particles, which may be observed in the spectra of energetic cosmic rays. In the background of such oscillating solutions gravitation repulsion between finite-size objects becomes possible. Since the Lagrangian is a non-linear function of curvature, equations of motion become of higher (4th) order and exhibit very rich pattern of new physical effects. In particular, the evolution of density perturbations is strongly different from that in General Relativity, amplified due to both parametric resonance and anti-friction phenomena.
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修正引力理论的不稳定性
这篇综述致力于考虑修正的引力理论可能的观测结果,这些理论被用来解释当代宇宙的加速膨胀。主要关注的是F(R)-模型。结果表明,在能量密度上升的系统中,曲率标量R(t)会引起高频大振幅的振荡。这些振荡导致基本粒子的产生,这可以在高能宇宙射线的光谱中观察到。在这种振荡解的背景下,有限大小物体之间的引力排斥成为可能。由于拉格朗日是曲率的非线性函数,运动方程变得更高(四)阶,并表现出非常丰富的新物理效应模式。特别是,密度微扰的演化与广义相对论中的大不相同,由于参数共振和抗摩擦现象而被放大。
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