Bounds on Charged, Stable Superpartners from Cosmic Ray Production
arXiv:hep-ph/0202252 · doi:10.1103/PhysRevD.66.075007
Abstract
Supersymmetric models often predict a lightest superpartner (LSP) which is electrically charged and stable on the timescales of collider experiments. If such a particle were to be observed experimentally, is it possible to determine whether or not it is stable on cosmological timescales? Charged, stable particles are usually considered to be excluded by cosmological arguments coupled with terrestrial searches for anomalously heavy water molecules. But when the cosmology is significantly altered, as can happen in models with large extra dimensions, these arguments are in turn significantly weakened. In this paper we suggest an alternate way to use searches for superheavy water to constrain the lifetimes of long-lived, charged particles, independent of most cosmological assumptions. By considering SUSY production by cosmic rays in the upper atmosphere, we are able to use current bounds on superheavy water to constrain the mass scale of squarks and gluinos to be greater than about 230 GeV, assuming a stable, charged LSP. This bound can be increased, but only by significantly increasing the size of the initial water sample tested.
9 pages, 2 figures
References in corpus (1)
Cited by in corpus (22)
- Dark matter, dark energy, and alternate models: A review
- Search for Long-Lived Massive Charged Particles in 1.96 TeV $\bar{p}p}$ Collisions
- Modified Higgs Boson Phenomenology from Gauge or Gaugino Mediation in the NMSSM
- A search for charged massive long-lived particles
- Minimal Supergravity with m_0^2 < 0
- Compact stars with a small electric charge: the limiting radius to mass relation and the maximum mass for incompressible matter
- Probing new physics with long-lived charged particles produced by atmospheric and astrophysical neutrinos
- White Dwarf Bounds on CHAMPs
- Extremely Long-Lived Charged Massive Particles as A Probe for Reheating of the Universe
- Determining Spins of Metastable Sleptons at the Large Hadron Collider
- Thermodynamics and phase transitions of galactic clustering in higher-order Modified Gravity
- Quasistable charginos in ultraperipheral proton-proton collisions at the LHC
- Universal Extra Dimensions and Charged LKPs
- Search for charged massive long-lived particles at sqrt(s)= 1.96 TeV
- Origins of Inert Higgs Doublets
- Discovering SUSY with in the First LHC Physics Run
- Supersymmetry in Slow Motion
- A simple model of gauged lepton and baryon charges
- Review of searches for Higgs bosons and beyond the standard model physics at the Tevatron
- Naturalness-motivated composite Higgs model for generating the top Yukawa coupling
- Searches for Long-lived Particles at the Tevatron Collider
- Color confinement, dark matter and the missing of anti-matter