Implications of an Improved Neutron-Antineutron Oscillation Search for Baryogenesis: A Minimal Effective Theory Analysis
Abstract
Future neutron-antineutron (-) oscillation experiments, such as at the European Spallation Source and the Deep Underground Neutrino Experiment, aim to find first evidence of baryon number violation. We investigate implications of an improved - oscillation search for baryogenesis via interactions of - mediators, parameterized by an effective field theory (EFT). We find that even in a minimal EFT setup, there is overlap between the parameter space probed by - oscillation and the region that can realize the observed baryon asymmetry of the universe. The mass scales of exotic new particles are in the TeV-PeV regime, inaccessible at the LHC or its envisioned upgrades. Given the innumerable high energy theories that can match to, or resemble, the minimal EFT that we discuss, future - oscillation experiments could probe many viable theories of baryogenesis beyond the reach of other experiments.
Keywords
Cite
@article{arxiv.1806.00011,
title = {Implications of an Improved Neutron-Antineutron Oscillation Search for Baryogenesis: A Minimal Effective Theory Analysis},
author = {Christophe Grojean and Bibhushan Shakya and James D. Wells and Zhengkang Zhang},
journal= {arXiv preprint arXiv:1806.00011},
year = {2018}
}
Comments
14 pages, 5 figures; v2: revised discussion on future ESS and DUNE sensitivity, added comment on dinucleon decays