Constancy of stabilized Randall-Sundrum model with respect to quantum corrections

I. P. Volobuev, S. Keizerov, E. Rakhmetov
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引用次数: 0

Abstract

In the Randall-Sundrum model stabilized with the help of the Goldberger-Wise scalar field, the lowest order vacuum quantum corrections to the energy-momentum tensor of the scalar and tensor fields are calculated. It is shown that the corresponding vacuum energy density of the fields in the bulk leads to the Casimir effect. Using the dimensional regularization method and the Abel-Plana formula, the divergences have been isolated and the vacuum energy density has been renormalized. An analytical expression for the Casimir force is obtained and an estimate of its influence on the model parameters is made. It was found that the quantum corrections lead only to a negligibly small decrease in the distance between the branes, i.e. the model possesses constancy with respect to quantum corrections.
稳定的兰德尔-桑德鲁姆模型在量子修正方面的恒定性
在借助戈德伯格-怀斯(Goldberger-Wise)标量场稳定的兰德尔-桑德鲁姆(Randall-Sundrum)模型中,计算了标量场和张量场的能量-动量张量的最低阶真空量子修正。利用维正则化方法和阿贝尔-普拉纳公式,发散得到了分离,真空能量密度得到了重正则化。得到了卡西米尔力的分析表达式,并估计了它对模型参数的影响。研究发现,量子修正只导致支链间距的微小减小,可以忽略不计,即模型在量子修正方面具有恒定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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