Higgs Mechanism for Gravitons
arXiv:1003.1437 · doi:10.1142/S0217732310033724
Abstract
Just like the vector gauge bosons in the gauge theories, it is now known that gravitons acquire mass in the process of spontaneous symmetry breaking of diffeomorphisms through the condensation of scalar fields. The point is that we should find the gravitational Higgs mechanism such that it results in massive gravity in a flat Minkowski space-time without non-unitary propagating modes. This is usually achieved by including higher-derivative terms in scalars and tuning the cosmological constant to be a negative value in a proper way. Recently, a similar but different gravitational Higgs mechanism has been advocated by Chamseddine and Mukhanov where one can relax the negative cosmological constant to zero or positive one. In this work, we investigate why the non-unitary ghost mode decouples from physical Hilbert space in a general space-time dimension. Moreover, we generalize the model to possess an arbitrary potential and clarify under what conditions the general model exhibits the gravitational Higgs mechanism. By searching for solutions to the conditions, we arrive at two classes of potentials exhibiting gravitational Higgs mechanism. One class includes the model by Chamseddine and Mukhanov in a specific case while the other is completely a new model.
11 pages
References in corpus (9)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Infrared-modified gravities and massive gravitons
- The Higgs Phenomenon in Quantum Gravity
- Unitarity in the Brout-Englert-Higgs Mechanism for Gravity
- Massive Gravity in Minkowski Space via Gravitational Higgs Mechanism
- Gravitational Higgs Mechanism with a Topological Term
- Gravitational Higgs Mechanism and Massive Gravity
- Classical Solutions of Ghost Condensation Models
- Massive Gravity in Curved Cosmological Backgrounds
Cited by in corpus (17)
- Theoretical Aspects of Massive Gravity
- Explicit versus Spontaneous Diffeomorphism Breaking in Gravity
- Classically Scale-invariant B-L Model and Conformal Gravity
- Constraints on a Gravitational Higgs Mechanism
- Classically Scale-invariant B-L Model and Dilaton Gravity
- Spacetime Symmetry Breaking and Einstein-Maxwell Theory
- Remarks on Higgs Mechanism for Gravitons
- Non-perturbative Unitarity of Gravitational Higgs Mechanism
- Hamiltonian Analysis of the Higgs Mechanism for Graviton
- Massive Gravity in de Sitter Space via Gravitational Higgs Mechanism
- Stringent theoretical and experimental bounds on graviton mass
- Quartet-metric general relativity: scalar graviton, dark matter and dark energy
- Bose-Einstein condensation as an alternative to inflation
- The dynamical origin of the graviton mass in the non-linear theory of massive gravity
- Quartet-metric gravity and dark components of the Universe
- Modified gravity/entropic gravity correspondence due to graviton mass
- Multiscalar-metric gravity: cosmological constant screening and emergence of massive-graviton dark components