论文标题

在弯曲的Braneworld中弹跳宇宙学

Bouncing cosmology in a curved braneworld

论文作者

Banerjee, Indrani, Paul, Tanmoy, SenGupta, Soumitra

论文摘要

我们探索了宇宙中非单星反弹的可能性,从具有动力学麸皮和非零的brane宇宙学常数的扭曲的braneworld情况。这样的模型自然结合了一个源自该理论模量的辐射的标量扇形。 Brane宇宙常数的存在使麸皮成为非灯泡,并在四个维度有效作用中引起了辐射场的潜力和非典型动力学项。动力学术语在模量进化的域内表现出类似幻影的行为,导致违反在弹跳宇宙中经常观察到的无效能量状况。辐射电位和动力学术语的相互作用使辐射场从正常状态到幻影制度的演变,宇宙从合同时代转变为通过非细胞反弹的扩展时期。对这种背景进化的标量和张量扰动的分析表明,标量扰动的幅度$ \ MATHCAL {a} _s $,张量表与标量比$ r $和标量光谱$ n_s $与当前的约束符合了plance satellite的当前约束。讨论了含义。

We explore the possibility of a non-singular bounce in our universe from a warped braneworld scenario with dynamical branes and a non-zero brane cosmological constant. Such models naturally incorporate a scalar sector known as the radion originating from the modulus of the theory. The presence of brane cosmological constant renders the branes to be non-flat and gives rise to a potential and a non-canonical kinetic term for the radion field in the four dimensional effective action. The kinetic term exhibits a phantom-like behavior within the domain of evolution of the modulus which leads to a violation of the null-energy condition often observed in a bouncing universe. The interplay of the radion potential and kinetic term enables the evolution of the radion field from a normal to a phantom regime where the universe transits from a contracting era to an expanding epoch through a non-singular bounce. Analysis of the scalar and tensor perturbations over such background evolution reveal that the primordial observables e.g., the amplitude of scalar perturbations $\mathcal{A}_s$, tensor to scalar ratio $r$ and the scalar spectral index $n_s$ are in agreement with the current constraints reported by the Planck satellite. The implications are discussed.

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