论文标题

宇宙学在本地规模不变的重力中

Cosmology in a locally scale invariant gravity

论文作者

Shimon, Meir

论文摘要

在Weyl不变标量调整器(WIST)重力理论的背景下,提出了“弹跳”宇宙学模型。除了weyl不变之外,理论是u(1) - 对称,并具有保守的全球电荷。整个宇宙背景演变是由一个复杂的标量场(在静态“共同”框架中进化的复杂标量)所解释的。它的(维)模量$χ$调节质量的动力和明显的空间扩展。宇宙的红移基本上是由于rydberg常数在共同框架中的宇宙演变所致。 $χ$的时间演变类似于存在中心电位$ V(χ)$的点粒子的时间演变。标量场来源于时空曲率;因此,它可以解释(宇宙)黑暗部门。辐射的能量密度与与标量场的相$α$相关的能量密度之间的相互作用(这是相反的迹象)导致经典的非细胞稳定且几乎对称的弹跳动力学在辐射主导的ERA中深处。这涵盖了观察到的红变变的时代,此前是一个“弹跳”,该时代是脸红的时代。该模型本质上没有地平线或平坦性问题。大爆炸核合成在“弹跳”处将较低的1-10 MEV绑定在典型的能量尺度上。

A `bouncing' cosmological model is proposed in the context of a Weyl-invariant scalar-tensor (WIST) theory of gravity. In addition to being Weyl-invariant the theory is U(1)-symmetric and has a conserved global charge. The entire cosmic background evolution is accounted for by a complex scalar field that evolves in the static `comoving' frame. Its (dimensional) modulus $χ$ regulates the dynamics of masses and the apparent space expansion. Cosmological redshift is essentially due to the cosmic evolution of the Rydberg constant in the comoving frame. The temporal evolution of $χ$ is analogous to that of a point particle in the presence of a central potential $V(χ)$. The scalar field sources the spacetime curvature; as such it can account for the (cosmological) Dark Sector. An interplay between the energy density of radiation and that of the kinetic energy associated with the phase $α$ of the scalar field (which are of opposite signs) results in a classical non-singular stable and nearly-symmetric bouncing dynamics deep in the radiation-dominated era. This encompasses the observed redshifting era which preceded by a `bounce' that follows a blushifting era. The model is essentially free of the horizon or flatness problems. Big Bang nucleosynthesis sets a lower 1-10 MeV bound on the typical energy scale at the `bounce'.

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