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用幂律暴胀约束基于熵的宇宙学。

Constraining barrow entropy-based cosmology with power-law inflation.

作者信息

Luciano G G

机构信息

Applied Physics Section of Environmental Science Department, Escola Politècnica Superior, Universitat de Lleida, Av. Jaume II, 69, 25001 Lleida, Spain.

出版信息

Eur Phys J C Part Fields. 2023;83(4):329. doi: 10.1140/epjc/s10052-023-11499-7. Epub 2023 Apr 26.

Abstract

We study the inflationary era of the Universe in a modified cosmological scenario based on the gravity-thermodynamics conjecture with Barrow entropy instead of the usual Bekenstein-Hawking one. The former arises from the effort to account for quantum gravitational effects on the horizon surface of black holes and, in a broader sense, of the Universe. First, we extract modified Friedmann equations from the first law of thermodynamics applied to the apparent horizon of a Friedmann-Robertson-Walker Universe. Assuming a power-law behavior for the scalar inflaton field, we then investigate how the inflationary dynamics is affected in Barrow cosmological setup. We find that the inflationary era may phenomenologically consist of the slow-roll phase, while Barrow entropy is incompatible with kinetic inflation. By demanding observational consistency of the scalar spectral index and tensor-to-scalar ratio with recent Planck data, we finally constrain Barrow exponent to , which is the most stringent bound in so-far literature.

摘要

我们在一个基于引力 - 热力学猜想的修正宇宙学场景中研究宇宙的暴胀时代,该猜想采用巴罗熵而非通常的贝肯斯坦 - 霍金熵。前者源于为解释量子引力对黑洞视界表面以及更广义上对宇宙的影响所做的努力。首先,我们从应用于弗里德曼 - 罗伯逊 - 沃克宇宙表观视界的热力学第一定律中提取修正的弗里德曼方程。假设标量暴胀场具有幂律行为,然后我们研究在巴罗宇宙学设定中暴胀动力学是如何受到影响的。我们发现,从现象学角度来看,暴胀时代可能由慢滚阶段组成,而巴罗熵与动力学暴胀不相容。通过要求标量谱指数和张量与标量比与近期普朗克数据在观测上保持一致,我们最终将巴罗指数限制在 ,这是迄今为止文献中最严格的限制。

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