...
首页> 外文期刊>Physical review, D >Quantum backreaction of O(N)-symmetric scalar fields and de Sitter spacetimes at the renormalization point: Renormalization schemes and the screening of the cosmological constant
【24h】

Quantum backreaction of O(N)-symmetric scalar fields and de Sitter spacetimes at the renormalization point: Renormalization schemes and the screening of the cosmological constant

机译:o(n) - 对称标量的量子反应在重新运算点处的o(n) - ymmetric标量场和de Satter Spacetimes:重整化方案和宇宙常数的筛选

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We consider a theory of N self-interacting quantum scalar fields with quartic O ( N ) -symmetric potential, with a coupling constant λ , in a generic curved spacetime. We analyze the renormalization process of the semiclassical Einstein equations at leading order in the 1 / N expansion for different renormailzation schemes, namely: the traditional one that sets the geometry of the spacetime to be Minkowski at the renormalization point and other schemes (originally proposed in [1,2]) that set the geometry to be that of a fixed de Sitter spacetime. In particular, we study the quantum backreaction for fields in de Sitter spacetimes with masses much smaller than the expansion rate H . We find that the scheme that uses the classical de Sitter background solution at the renormalization point, stands out as the most convenient to study the quantum effects on de Sitter spacetimes. We obtain that the backreaction is suppressed by H 2 / M pl 2 with no logarithmic enhancement factor of ln λ , giving only a small screening of the classical cosmological constant due to the backreaction of such quantum fields. We point out the use of the new schemes can also be more convenient than the traditional one to study quantum effects in other spacetimes relevant for cosmology.
机译:我们考虑N个自相互作用的量子标量场的四次与O(N) - 对称电位的理论,具有耦合常数λ,在一个通用的弯曲时空。我们分析了半经典爱因斯坦方程的重新正规化处理在1 / N扩张不同renormailzation方案,即领头阶:传统的一个套时空的几何形状是可夫斯基在重正化点和其他方案(最初在提出[1,2]),该设置的几何形状是固定的德西特时空。特别是,我们研究与群众德西特时空场的量子backreaction比膨胀率^ h小得多。我们发现,使用在重整化点经典德西特背景解决方案,脱颖而出,成为最方便的来研究德西特时空的量子效应。我们得到的是,backreaction由H 2 / M PL 2的LNλ没有对数增强因子,只给古典宇宙常数的一小筛选由于这种量子字段的backreaction抑制。我们指出了使用新方案也可以比传统的一个有关宇宙学在其他时空研究量子效应更加方便。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号