Neutrons and the New Standard Model
arXiv:0907.2716 · doi:10.1016/j.nima.2009.07.043
Abstract
Fundamental symmetry tests with neutrons can provide unique information about whatever will be the new Standard Model of fundamental interactions. I review two aspects of this possibility: searches for the permanent electric dipole moment of the neutron and its relation to the origin of baryonic matter, and precision studies of neutron decay that can probe new symmetries. I discuss the complementarity of these experiments with other low-energy precision tests and high energy collider searches for new physics.
Proceedings of the 2008 ILL International Workshop on Particle Physics with Slow Neutrons; 13 pages, 2 figures
References in corpus (9)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Singlet Higgs Phenomenology and the Electroweak Phase Transition
- Electric Dipole Moments in the MSSM Reloaded
- Low Energy Precision Test of Supersymmetry
- Bino-driven Electroweak Baryogenesis with highly suppressed Electric Dipole Moments
- Baryogenesis, Electric Dipole Moments and Dark Matter in the MSSM
- Yukawa and Tri-scalar Processes in Electroweak Baryogenesis
- Yukawa Interactions and Supersymmetric Electroweak Baryogenesis
- Supersymmetric Contributions to Weak Decay Correlation Coefficients