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Stable FLRW solutions in generalized massive gravity

机译:广义重力下稳定的FLRW解决方案

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摘要

We present exact Friedmann Lemaitre Robertson Walkers (FLRW) solutions in generalized massive gravity where the mass parameters are naturally promoted to Lorentz-invariant functions of the Stuckelberg fields. This new dependence relaxes the constraint that would otherwise prevent massive gravity from possessing exact FLRW solutions. It does so without the need to introduce additional degrees of freedom. We find self-accelerating cosmological solutions and show that, with a mild restriction on the region of phase space, these cosmological solutions exhibit full stability, i.e. absence of ghosts and gradient instabilities for all the tensor, vector and scalar modes, for all cosmic time. We perform the full decoupling limit analysis, including vector degrees of freedom, which can be used to confirm the existence of an active Vainshtein mechanism about these solutions.
机译:我们在广义质量重力中给出精确的Friedmann Lemaitre Robertson Walkers(FLRW)解决方案,其中质量参数自然地提升为Stuckelberg油田的Lorentz不变函数。这种新的依赖性放宽了约束,否则约束将阻止大重力拥有精确的FLRW解决方案。这样做无需引入额外的自由度。我们发现了自加速的宇宙学解,并表明,在相空间区域受到轻微限制的情况下,这些宇宙学解表现出了完全的稳定性,即在所有宇宙时间内,所有张量,矢量和标量模式都没有重影和梯度不稳定性。 。我们执行完整的解耦极限分析,包括矢量自由度,可用于确认有关这些解决方案的主动Vainshtein机制的存在。

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