Fat Gravitons, the Cosmological Constant and Sub-millimeter Tests
arXiv:hep-th/0306106 · doi:10.1103/PhysRevD.69.044014
Abstract
We revisit the proposal that the resolution of the Cosmological Constant Problem involves a sub-millimeter breakdown of the point-particle approximation for gravitons. No fundamental description of such a breakdown, which simultaneously preserves the point-particle nature of matter particles, is yet known. However, basic aspects of the self-consistency of the idea, such as preservation of the macroscopic Equivalence Principle while satisfying quantum naturalness of the cosmological constant, are addressed in this paper within a Soft Graviton Effective Theory. It builds on Weinberg's analysis of soft graviton couplings and standard heavy particle effective theory, and minimally encompasses the experimental regime of soft gravity coupled to hard matter. A qualitatively distinct signature for short-distance tests of gravity is discussed, bounded by naturalness to appear above approximately 20 microns.
31 pages, 18 figures, Ref.[20] added, minor correction to Fig. 3 made
Cited by in corpus (44)
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Dark Energy
- The Physics of Cosmic Acceleration
- Sub-millimeter Tests of the Gravitational Inverse-square Law
- Dark Energy from Mass Varying Neutrinos
- Particle Physics Implications of a Recent Test of the Gravitational Inverse Square Law
- New Test of the Gravitational Law at Separations down to 52 m
- Categorizing Different Approaches to the Cosmological Constant Problem
- The Dark Dimension and the Swampland
- Testing the running of the cosmological constant with Type Ia Supernovae at high z
- Softly Massive Gravity
- Revisiting fifth forces in the Galileon model
- A Symmetry for the Cosmological Constant
- Holography and Brane-bulk Energy Exchange
- Fading Gravity and Self-Inflation
- Phantom energy mediates a long-range repulsive force
- Search for non-Newtonian interactions at micrometer scale with a levitated test mass
- Constraints on emergent gravity
- Modified Dispersion Relations from the Renormalization Group of Gravity
- Modified gravity, Dark Energy and MOND
- The Multiverse and Particle Physics
- Interacting atomic interferometry for rotation sensing approaching the Heisenberg Limit
- The Cosmological Constant Problem, an Inspiration for New Physics
- A Nonlocal Approach to the Cosmological Constant Problem
- Gravity and axions from a random UV QFT
- Emergent Gravity from a Mass Deformation in Warped Spacetime
- Gravity's Scalar Cousin
- Soft collinear effective theory for gravity
- Lower Limit to the Scale of an Effective Theory of Gravitation
- A Friedmann-Lemaitre-Robertson-Walker cosmological model with running Lambda
- Gradient modification of Newtonian gravity
- Holographic Bound in Quantum Field Energy Density and Cosmological Constant
- Dark Energy, scalar-curvature couplings and a critical acceleration scale
- Parametric Resonance Enhancement in Neutron Interferometry and Search for Non-Newtonian Gravity
- On novel string theories from 4d gauge theories
- Probing Composite Gravity in Colliders
- Does the Vacuum Gravitate on Microscopic Scales? Rydberg Atoms Indicate Probably Not
- Detecting Nanometer-Scale New Forces with Coherent Neutron Scattering
- Study of surface potentials using resonant tunneling of cold atoms in optical lattices
- Holography and Emergent 4D Gravity
- Testing weakest force with coldest spot
- Dark energy from gravitational corrections
- Optomechanical vector sensing of new forces at 6 micron separation
- Cosmology and short-distance gravity