English

Supersymmetric Dark Matter and the Energy of a Linear Electron-Positron Collider

High Energy Physics - Phenomenology 2009-09-11 v1 Astrophysics High Energy Physics - Experiment

Abstract

We suggest that supersymmetric dark matter be used to set the energy scale of a linear e+ee^+ e^- collider. Assuming that the lightest supersymmetric particle (LSP) is a stable neutralino χ\chi, as in many incarnations of the MSSM with conserved R parity, previous calculations that include coannihilation effects have delineated the region of the (m1/2,m0)(m_{1/2}, m_0) plane where the LSP cosmological relic density lies in the preferred range 0.1\laΩχh2\la0.30.1 \la \Omega_{\chi} h^2 \la 0.3. We evaluate here the total cross section for e+ee^+ e^- \to visible pairs of supersymmetric particles, for different values of m1/2m_{1/2} and m0m_0, and investigate how much of the dark matter region can be explored by e+ee^+ e^- colliders with different centre-of-mass energies ECME_{CM}. We find that a collider with ECM=500E_{CM} = 500 GeV or 1 TeV can only explore part of the cosmological region, and that a collider with ECM=1.5E_{CM} = 1.5 TeV with sufficient luminosity can explore all of the supersymmetric dark matter region.

Keywords

Cite

@article{arxiv.hep-ph/9912324,
  title  = {Supersymmetric Dark Matter and the Energy of a Linear Electron-Positron Collider},
  author = {John Ellis and Gerardo Ganis and Keith A. Olive},
  journal= {arXiv preprint arXiv:hep-ph/9912324},
  year   = {2009}
}

Comments

14 pages, latex, 4 eps figures