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Inflationary universe from higher derivative quantum gravity coupled with scalar electrodynamics

机译:高导数量子引力结合标量电动力学的通货膨胀宇宙

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摘要

We study inflation for a quantum scalar electrodynamics model in curved space time and for higher derivative quantum gravity (QG) coupled with scalar electrodynamics. The corresponding renormalization group (RG) improved potential is evaluated for both theories in Jordan frame where non-minimal scalar gravitational coupling sector is explicitly kept. The role of one-loop quantum corrections is investigated by showing how these corrections enter in the expressions for the slow-roll parameters, the spectral index and the tensor-to-scalar ratio and how they influence the bound of the Hubble parameter at the beginning of the primordial acceleration. We demonstrate that the viable inflation maybe successfully realized, so that it turns out to be consistent with last Planck and BICEP2/Keck Array data. (C) 2016 The Authors. Published by Elsevier B.V.
机译:我们研究了弯曲时空中的量子标量电动力学模型的膨胀以及与标量电动力学耦合的更高的导数量子引力(QG)。在显式保持非最小标量重力耦合扇区的Jordan框架中,针对这两种理论评估了相应的重归一化组(RG)改进的潜力。通过显示这些校正如何输入慢速参数表达式,光谱指数和张量/标量比以及它们如何影响开始时的哈勃参数界限,研究了单环量子校正的作用原始加速度的我们证明可行的通货膨胀可能成功实现,因此它与上一个Planck和BICEP2 / Keck Array数据一致。 (C)2016作者。由Elsevier B.V.发布

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