On the Vainshtein mechanism in the minimal model of massive gravity
arXiv:1401.0497 · doi:10.1088/1475-7516/2014/03/043
Abstract
We reinvestigate the fate of the Vainhstein mechanism in the minimal model of dRGT massive gravity. As the latter is characterised by the complete absence of interactions in the decoupling limit, we study their structure at higher energies. We show that in static spherically symmetric configurations, the lowest energy scale of interactions is pushed up to the Planck mass. This fact points towards an absence of Vainshtein mechanism in this framework, but does not prove it. By resorting to the exact vacuum equations of motion, we show that there is indeed an obstruction that precludes any recovery of General Relativity under the conditions of stationarity and spherical symmetry. However, we argue that the latter are too restrictive and might miss some important physical phenomena. Indeed, we point out that in generic non spherically symmetric or time-dependent situations, interactions arising at energies arbitrarily close to the energy scale of the decoupling limit reappear. This leads us to question whether the small degree of spherical symmetry breaking in the solar system can be sufficient to give rise to a successful Vainshtein mechanism.
16 pages
References in corpus (5)
- Resummation of Massive Gravity
- Degravitation of the Cosmological Constant and Graviton Width
- Exact Schwarzschild-de Sitter black holes in a family of massive gravity models
- The recovery of General Relativity in massive gravity via the Vainshtein mechanism
- The Vainshtein mechanism in the Decoupling Limit of massive gravity
Cited by in corpus (10)
- Massive Gravity
- New perspective for black hole thermodynamics in Gauss-Bonnet-Born-Infeld massive gravity
- Rotating black holes in massive gravity
- Non-Singular Black Holes in Massive Gravity: Time-Dependent Solutions
- Thermodynamics and Optical Properties of Phantom AdS Black Holes in Massive Gravity
- Effects of the external string cloud on the Van der Waals like behavior and efficiency of AdS-Schwarzschild black holes in massive gravity
- Screened and Unscreened Solutions for Relativistic Star in de Rham-Gabadadze-Tolley (dRGT) Massive Gravity
- Vainshtein mechanism in massive gravity nonlinear sigma models
- On strong coupling scales in (minimal) massive gravity
- Some perspective of thermodynamical and optical properties of black holes in Maxwell-dilaton-dRGT-like massive gravity