English

Notes on several phenomenological laws of quantum gravity

General Relativity and Quantum Cosmology 2013-08-21 v1 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

Phenomenological approaches to quantum gravity try to infer model-independent laws by analyzing thought experiments and combining both quantum, relativistic, and gravitational ingredients. We first review these ingredients -three basic inequalities- and discuss their relationships with the nature of fundamental constants. In particular, we argue for a covariant mass bound conjecture: in a spacetime free of horizon, the mass inside a surface AA cannot exceed 16πG2m2<A16 \pi G^2 m^2< A , while the reverse holds in a spacetime with horizons. This is given a precise definition using the formalism of light-sheets. We show that /c\hbar/c may be also given a geometrical interpretation, namely 4π2/m2<A4 \pi \hbar^2/m^2< A. We then combine these inequalities and find/review the following: (1) Any system must have a size greater than the Planck length, in the sense that there exists a minimal area (2) We comment on the Minimal Length Scenarios and the fate of Lorentz symmetry near the Planck scale (3) Quanta with transplanckian frequencies are allowed in a large enough boxes (4) There exists a mass-dependent maximal acceleration given by mc3/m c^3/\hbar if m<mpm<m_p and by c4/Gmc^4/G m if m>mpm>m_p (5) There exists a mass dependent maximal force and power (6) There exists a maximal energy density and pressure (7) Physical systems must obey the Holographic Principle (8) Holographic bounds can only be saturated by systems with m>mpm>m_p; systems lying on the ``Compton line'' l1/ml \sim 1/m are fundamental objects without substructures (9) We speculate on a new bound from above for the action. In passing, we note that the maximal acceleration is of the order of Milgrom's acceleration a0a_0 for ultra-light particles (mH0)m\sim H_0) that could be associated to the Dark Energy fluid. This suggests designing toy-models in which modified gravity in galaxies is driven by the DE field, via the maximal acceleration principle.

Keywords

Cite

@article{arxiv.1308.4044,
  title  = {Notes on several phenomenological laws of quantum gravity},
  author = {Jean-Philippe Bruneton},
  journal= {arXiv preprint arXiv:1308.4044},
  year   = {2013}
}

Comments

15 pages, 4 figures. Comments welcome

R2 v1 2026-06-22T01:11:35.697Z