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首页> 外文期刊>Modern Physics Letters, A >Gauge theory of gravity with de sitter symmetry as a solution to the cosmological constant problem and the dark energy puzzle
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Gauge theory of gravity with de sitter symmetry as a solution to the cosmological constant problem and the dark energy puzzle

机译:具有Desitter对称性的量规理论解决了宇宙常数问题和暗能量难题

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We propose a solution to the longstanding cosmological constant (CC) problem which is based on the fusion of two existing concepts. The first is the suggestion that the proper description of classical gravitational effects is the gauge theory of gravity in which the connection instead of the metric acts as the dynamical variable. The resulting field equation does not then contain the CC term. This removes the connection between the CC and the quantum vacuum energy, and therefore addresses the old CC problem of why quantum vacuum energy does not gravitate. The CC-equivalent in this approach arises from the constant of integration when reducing the field equation to the Einstein equation. The second is the assumption that the universe obeys de Sitter symmetry, with the observed accelerating expansion as its manifestation. We combine these ideas and identify the constant of integration with the inverse-square of the radius of curvature of the de Sitter space. The origin of dark energy (DE) is therefore associated with the inherent spacetime geometry, with the smallness of DE protected by symmetry. This addresses the new CC problem, or the DE puzzle. This approach, however, faces major challenges from quantum considerations. These are the ghost problem associated with higher order gravity theories and the quantum instability of the de Sitter spacetime. We discuss their possible remedies.
机译:我们提出了一个基于两个现有概念的融合的长期宇宙常数(CC)问题的解决方案。第一个建议是,对经典引力效应的恰当描述是引力的规范理论,在该理论中,连接代替度量作为动力变量。然后,所得的场方程不包含CC项。这消除了CC和量子真空能之间的联系,因此解决了为什么量子真空能不引人注意的旧CC问题。当将场方程简化为爱因斯坦方程时,这种等效于CC的方法来自积分常数。第二个假设是宇宙遵循de Sitter对称性,并以观测到的加速膨胀为表现形式。我们结合这些想法,并确定积分常数与de Sitter空间曲率半径的平方成反比。因此,暗能量(DE)的起源与固有的时空几何形状相关,而DE的较小性受到对称性的保护。这解决了新的CC问题或DE难题。但是,这种方法面临着量子方面的重大挑战。这些是与高阶引力理论和de Sitter时空的量子不稳定性相关的幻影问题。我们讨论他们可能的补救措施。

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