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Speed of gravity

机译:重力的速度

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Within the standard effective field theory of general relativity, we show that the speed of gravitational waves deviates, ever so slightly, from luminality on cosmological and other spontaneously Lorentz-breaking backgrounds. This effect results from loop contributions from massive fields of any spin, including Standard Model fields, or from tree level effects from massive higher spins s ≥ 2 . We show that for the choice of interaction signs implied by S -matrix and spectral density positivity bounds suggested by analyticity and causality, the speed of gravitational waves is in general superluminal at low energies on null energy condition preserving backgrounds, meaning gravitational waves travel faster than allowed by the metric to which photons and Standard Model fields are minimally coupled. We show that departure of the speed from unity increases in the IR and argue that the speed inevitably returns to luminal at high energies as required by Lorentz invariance. Performing a special tuning of the effective field theory so that renormalization sensitive curvature-squared terms are set to zero, we find that finite loop corrections from Standard Model fields still lead to an epoch dependent modification of the speed of gravitational waves which is determined by the precise field content of the lightest particles with masses larger than the Hubble parameter today. Depending on interpretation, such considerations could potentially have far-reaching implications on light scalar models, such as axionic or fuzzy cold dark matter.
机译:在标准的一般相对性的有效场理论中,我们表明引力波的速度偏离,略微略微,从宇宙学和其他自发的洛伦兹破碎背景中的leminality。这种效果来自来自任何旋转的大规模领域的环路贡献,包括标准模型字段,或从大规模更高旋转S≥2的树级效应。我们表明,对于S-MATRIX所暗示的相互作用标志和分析性和因果关系提出的光谱密度阳性界定,引力波的速度在零能量条件保存背景下的低能量的一般超级阵容,意味着重力行程比由光子和标准模型字段最小耦合的度量标准允许。我们展示了IR统一的速度的出发增加,并认为速度不可避免地在Lorentz Invariance的要求下恢复到Luminal。执行有效场理论的特殊调整,使得重整化敏感曲率方形的术语被设定为零,我们发现来自标准模型字段的有限循环校正仍然导致了由所确定的重力波的速度依赖性修改最轻颗粒的精确场含量,其具有大于哈勃参数的质量。根据解释,这些考虑可能可能对轻标量模型具有深远的影响,例如轴轴或模糊的冷暗物质。

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