arXiv:hep-ph/0201227·v1·High Energy Physics — Phenomenology
Physics at Future Hadron Colliders
U. Baur (Buffalo) · R. Brock (MSU) · J. Parsons (Columbia) M. Albrow (FNAL) · D. Denisov (FNAL) · T. Han (Wisconsin) · A. Kotwal (Duke) · F. Olness (SMU) · J. Qian (Michigan) · S. Belyaev · et al
Abstract
We discuss the physics opportunities and detector challenges at future hadron colliders. As guidelines for energies and luminosities we use the proposed luminosity and/or energy upgrade of the LHC (SLHC), and the Fermilab design of a Very Large Hadron Collider (VLHC). We illustrate the physics capabilities of future hadron colliders for a variety of new physics scenarios (supersymmetry, strong electroweak symmetry breaking, new gauge bosons, compositeness and extra dimensions). We also investigate the prospects of doing precision Higgs physics studies at such a machine, and list selected Standard Model physics rates.
Comments: summary report of the Snowmass 2001 E4 working group "Physics at Future Hadron Colliders", RevTex4, 26 pages, 22 figures, 5 tables, full Author list included in paper