Probing Neutrino Oscillations in Supersymmetric Models at the Large Hadron Collider
arXiv:1006.5075 · doi:10.1103/PhysRevD.82.075002
Abstract
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino oscillation parameters. In this case the CERN Large Hadron Collider (LHC) has the potential to probe the atmospheric neutrino mixing angle with sensitivity competitive to its low-energy determination by underground experiments. Under realistic detection assumptions, we identify the necessary conditions for the experiments at CERN's LHC to probe the simplest scenario for neutrino masses induced by minimal supergravity with bilinear R parity violation.
11 pages, 6 figures. To appear in Physical Review D
References in corpus (7)
Cited by in corpus (15)
- The low-scale approach to neutrino masses
- Displaced Supersymmetry
- Neutrino masses and mixing: a flavour symmetry roadmap
- TeV Scale Models of Neutrino Masses and Their Phenomenology
- Gravitino dark matter and neutrino masses with bilinear R-parity violation
- Towards deconstructing the simplest seesaw mechanism
- General MSSM signatures at the LHC with and without R-parity
- Neutrino mass from higher than d=5 effective operators in SUSY, and its test at the LHC
- Probing neutralino properties in minimal supergravity with bilinear R-parity violation
- The LSP Stability and New Higgs Signals at the LHC
- High-energy colliders as a probe of neutrino properties
- Bilinear R-parity violation with flavor symmetry
- LHC phenomenology of supersymmetric models beyond the MSSM
- CP violation in bilinear R-parity violation and its consequences for the early universe
- Searches for Prompt -Parity-Violating Supersymmetry at the LHC