A fluctuating energy-momentum may produce an unstable world
arXiv:astro-ph/0304050 · doi:10.1016/S0927-6505(03)00195-6
Abstract
Quantum gravitational effects may induce stochastic fluctuations in the structure of space-time, to produce a characteristic foamy structure. It has been known for some time now that these fluctuations may have observable consequencies for the propagation of cosmic ray particles over cosmological distances. We note here that the same fluctuations, if they exist, imply that some decay reactions normally forbidden by elementary conservation laws, become kinematically allowed, inducing the decay of particles that are seen to be stable in our universe. Due to the strength of the prediction, we are led to consider this finding as the most severe constraint on the classes of models that may describe the effects of gravity on the structure of space-time. We also propose and discuss several potential loopholes of our approach, that may affect our conclusions. In particular, we try to identify the situations in which despite a fluctuating energy-momentum of the particles, the reactions mentioned above may not take place.
12 pages, no figures, accepted for publication in Astroparticle Physics
References in corpus (12)
- Doubly Special Relativity
- Doubly-Special Relativity: First Results and Key Open Problems
- On the statistical significance of the GZK feature in the spectrum of ultra high energy cosmic rays
- The phase coherence of light from extragalactic sources - direct evidence against first order Planck scale fluctuations in time and space
- Probing Planck-scale Physics with Extragalactic Sources?
- Quantum Theory of Noncommutative Fields
- Lack of observational evidence for quantum structure of space-time at Plank scales
- Spacetime foam
- Space Time Fluctuations and Ultra High Energy Cosmic Ray Interactions
- Anomalous particle-production thresholds through systematic and non-systematic quantum-gravity effects
- Decoherence and bare mass induced by nonconformal metric fluctuations
- The effect of Planck scale space time fluctuations on Lorentz invariance at extreme speeds
Cited by in corpus (4)
- Spacetime foam: from entropy and holography to infinite statistics and nonlocality
- Time delay of light signals in an energy-dependent spacetime metric
- On the Lorentz symmetry of the noncommutative chiral bosons
- New constraints on space-time Planck scale fluctuations from established high energy astronomy observations