Non-Local Modification of Gravity and the Cosmological Constant Problem
arXiv:hep-th/0209227
Abstract
We propose a phenomenological approach to the cosmological constant problem based on generally covariant non-local and acausal modifications of four-dimensional gravity at enormous distances. The effective Newton constant becomes very small at large length scales, so that sources with immense wavelengths and periods -- such as the vacuum energy-- produce minuscule curvature. Conventional astrophysics, cosmology and standard inflationary scenaria are unaffected, as they involve shorter length scales. A new possibility emerges that inflation may ``self-terminate'' naturally by its own action of stretching wavelengths to enormous sizes. In a simple limit our proposal leads to a modification of Einstein's equation by a single additional term proportional to the average space-time curvature of the Universe. It may also have a qualitative connection with the dS/CFT conjecture.
22 pages
References in corpus (1)
Cited by in corpus (6)
- 2004 TASI Lectures on Supersymmetry Breaking
- Nonlinear multidimensional cosmological models with form fields: stabilization of extra dimensions and the cosmological constant problem
- Classically Constrained Gauge Fields and Gravity
- Nonperturbative heat kernel and nonlocal effective action
- Double Trace Deformations, Infinite Extra Dimensions and Supersymmetry Breaking
- Phase transitions, massive gravitons and effective action in braneworld theory