Spatial gradients in the cosmological constant
arXiv:hep-ph/0101130 · doi:10.1088/1126-6708/2003/03/052
Abstract
It is possible that there may be differences in the fundamental physical parameters from one side of the observed universe to the other. I show that the cosmological constant is likely to be the most sensitive of the physical parameters to possible spatial variation, because a small variation in any of the other parameters produces a huge variation of the cosmological constant. It therefore provides a very powerful {\em indirect} evidence against spatial gradients or temporal variation in the other fundamental physical parameters, at least 40 orders of magnitude more powerful than direct experimental constraints. Moreover, a gradient may potentially appear in theories where the variability of the cosmological constant is connected to an anthropic selection mechanism, invoked to explain the smallness of this parameter. In the Hubble damping mechanism for anthropic selection, I calculate the possible gradient. While this mechanism demonstrates the existence of this effect, it is too small to be seen experimentally, except possibly if inflation happens around the Planck scale.
12 pages
References in corpus (5)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Preliminary Maps and Basic Results
- Further Evidence for Cosmological Evolution of the Fine Structure Constant
- Overview of the SuperNova/Acceleration Probe (SNAP)
- Cosmic Flows: A Status Report
Cited by in corpus (8)
- The Swampland, Quintessence and the Vacuum Energy
- Isotropy of the early universe from CMB anisotropies
- Exacerbating the cosmological constant problem with interacting dark energy
- Tilted Physics: A Cosmologically Dipole-Modulated Sky
- Transient Observers and Variable Constants, or Repelling the Invasion of the Boltzmann's Brains
- Relaxing the Higgs mass and its vacuum energy by living at the top of the potential
- Quantum Corrections in Quintessence Models
- The Multiverse and Particle Physics