Cosmological constant, renormalization group and Planck scale physics
Abstract
Starting from generic quantum effects at the Planck scale M_P, we find that the renormalization group running of the cosmological constant (CC) at low energies is possible if there is a smooth decoupling of all massive particles from M_P to the mass of the lightest neutrino. We discuss the theoretical implications of this running for the ``old'' and ``new'' cosmological constant problems. Interestingly enough, the CC running implies a strong relationship between quantum field theory and cosmology, which should be observable in the near future in experiments such as SNAP through the measurement of a cubic redshift dependence of the CC.
Cite
@article{arxiv.hep-ph/0305279,
title = {Cosmological constant, renormalization group and Planck scale physics},
author = {Ilya L. Shapiro and Joan Sola},
journal= {arXiv preprint arXiv:hep-ph/0305279},
year = {2009}
}
Comments
LaTeX, 6 pages, no figures. Talk presented at IRGA 2003: Renormalization Group and Anomalies in Gravitation and Cosmology, Ouro Preto, Brazil, 16-23 March, 2003