Broken R-parity in the sky and at the LHC

23Citations
Citations of this article
15Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

Supersymmetric extensions of the Standard Model with small R-parity and lepton number violating couplings are naturally consistent with primordial nucleosynthesis, thermal leptogenesis and gravitino dark matter. We consider supergravity models with universal boundary conditions at the grand unification scale, and scalar τ-lepton or binolike neutralino as next-to-lightest superparticle (NLSP). Recent Fermi-LAT data on the isotropic diffuse gamma-ray flux yield a lower bound on the gravitino lifetime. Comparing two-body gravitino and neutralino decays we find a lower bound on a neutralino NLSP decay length, cτxo1 ≳ 30 cm. Together with gravitino and neutralino masses one obtains a microscopic determination of the Planck mass. For a τT-NLSP there exists no modelindependent lower bound on the decay length. Here the strongest bound comes from the requirement that the cosmological baryon asymmetry is not washed out, which yields cττTx G 4 mm. However, without fine-tuning of parameters, one finds much larger decay lengths. For typical masses, m 3/2 ∼ 100 GeV and mNLSP ∼ 150 GeV, the discovery of a photon line with an intensity close to the Fermi-LAT limit would imply a decay length cτnlsp of several hundred meters, which can be measured at the LHC.

Author supplied keywords

Cite

CITATION STYLE

APA

Bobrovskyi, S., Buchmüller, W., Hajer, J., & Schmidt, J. (2010). Broken R-parity in the sky and at the LHC. Journal of High Energy Physics, 2010(10). https://doi.org/10.1007/JHEP10(2010)061

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free