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
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
ABSTRACT: Supersymmetric extensions of the standard model exhibiting bilinear R-parity violation can...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
Low energy supersymmetry with bilinear breaking of R parity leads to a weak-scale seesaw mechanism f...
Supersymmetry with broken R parity can explain the neutrino mass squared differences and mixing angl...
Supersymmetry with broken R parity can explain the neutrino mass squared differences and mixing angl...
Supersymmetric models with bilinear R-parity violation can account for the observed neutrino masses ...
ABSTRACT: Supersymmetric models with bilinear R-parity violation can account for the observed neutri...
Supersymmetry with bilinear R-parity violation provides a predictive framework for neutrino masses a...
Supersymmetry with bilinear R-parity violation provides a predictive framework for neutrino masses a...
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
ABSTRACT: Supersymmetric extensions of the standard model exhibiting bilinear R-parity violation can...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
The lightest supersymmetric particle may decay with branching ratios that correlate with neutrino os...
Low energy supersymmetry with bilinear breaking of R parity leads to a weak-scale seesaw mechanism f...
Supersymmetry with broken R parity can explain the neutrino mass squared differences and mixing angl...
Supersymmetry with broken R parity can explain the neutrino mass squared differences and mixing angl...
Supersymmetric models with bilinear R-parity violation can account for the observed neutrino masses ...
ABSTRACT: Supersymmetric models with bilinear R-parity violation can account for the observed neutri...
Supersymmetry with bilinear R-parity violation provides a predictive framework for neutrino masses a...
Supersymmetry with bilinear R-parity violation provides a predictive framework for neutrino masses a...
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
Supersymmetry with breaking of R-parity provides an attractive way to generate neutrino masses and l...
ABSTRACT: Supersymmetric extensions of the standard model exhibiting bilinear R-parity violation can...