On the emergence of Lorentzian signature and scalar gravity
arXiv:0806.4239 · doi:10.1103/PhysRevD.79.044019
Abstract
In recent years, a growing momentum has been gained by the emergent gravity framework. Within the latter, the very concepts of geometry and gravitational interaction are not seen as elementary aspects of Nature but rather as collective phenomena associated to the dynamics of more fundamental objects. In this paper we want to further explore this possibility by proposing a model of emergent Lorentzian signature and scalar gravity. Assuming that the dynamics of the fundamental objects can give rise in first place to a Riemannian manifold and a set of scalar fields we show how time (in the sense of hyperbolic equations) can emerge as a property of perturbations dynamics around some specific class of solutions of the field equations. Moreover, we show that these perturbations can give rise to a spin-0 gravity via a suitable redefinition of the fields that identifies the relevant degrees of freedom. In particular, we find that our model gives rise to Nordstrom gravity. Since this theory is invariant under general coordinate transformations, this also shows how diffeomorphism invariance (albeit of a weaker form than the one of general relativity) can emerge from much simpler systems.
10 pages, revtex4. Replaced with the published version
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- Analogue Models for Emergent Gravity
- Peculiar thermal states in the first-order thermodynamics of gravity
- Emergent gravitational dynamics from multi-BEC hydrodynamics?
- Quantum gravity without space-time singularities or horizons
- A note on particle kinematics in Horava-Lifshitz scenarios
- Challenges for Emergent Gravity
- Emergent gravity: the BEC paradigm
- Strange Horizons: Understanding Causal Barriers Beyond General Relativity
- The emergent Big Bang scenario
- Resolution of the cosmological constant problem by unimodular gravity and signature reversal symmetry