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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Cosmological constant from the emergent gravity perspective
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Cosmological constant from the emergent gravity perspective

机译:从引力的角度来看宇宙常数

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Observations indicate that our universe is characterized by a late-time accelerating phase, possibly driven by a cosmological constant Λ, with the dimensionless parameter AL_p~2 ≌ 10~(-122),where L_p = (G_h/c~3)~(1/2) is the Planck length. In this review, we describe how the emergent gravity paradigm provides a new insight and a possible solution to the cosmological constant problem. After reviewing the necessary background material, we identify the necessary and sufficient conditions for solving the cosmological constant problem. We show that these conditions are naturally satisfied in the einergent gravity paradigm in which (i) the field equations of gravity are invariant under the addition of a constant to the matter Lagrangian and (ii) the cosmological constant appears as an integration constant in the solution. The numerical value of this integration constant can be related to another dimensionless number (called CosMIn) that counts the number of modes inside a Hubble volume that cross the Hubble radius during the radiation and the matter-dominated epochs of the universe. The emergent gravity paradigm suggests that CosMIn has the numerical value 4π,which, in turn, leads to the correct, observed value of the cosmological constant. Further, the emergent gravity paradigm provides an alternative perspective on cosmology and interprets the expansion of the universe itself as a quest towards holographic equipartition. We discuss the implications of this novel and alternate description of cosmology.
机译:观测表明,我们的宇宙的特征在于后期的加速阶段,可能是由宇宙常数Λ驱动的,它具有无量纲参数AL_p〜2≌10〜(-122),其中L_p =(G_h / c〜3)〜( 1/2)是普朗克长度。在这篇综述中,我们描述了新兴引力范式如何为宇宙学常数问题提供新的见解和可能的解决方案。在回顾了必要的背景材料之后,我们确定了解决宇宙常数问题的必要和充分条件。我们证明了这些条件在固有重力范式中自然满足,其中(i)重力场方程在将常数添加到物质Lagrangian时是不变的,并且(ii)宇宙常数在溶液中显示为积分常数。该积分常数的数值可以与另一个无量纲数(称为CosMIn)相关,该无量纲数计算在宇宙辐射和物质占主导的纪元期间穿越哈勃半径的哈勃体积内模的数量。出现的引力范式表明,CosMIn的数值为4π,这反过来又导致了宇宙常数的正确观测值。此外,新兴引力范式为宇宙学提供了另一种视角,并将宇宙本身的扩展解释为对全息等分的追求。我们讨论了这种新颖的宇宙论的含义。

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