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BNL’s Role in High Energy Physics

BNL’s Role in High Energy Physics. Thomas B.W. Kirk Associate Director for High Energy and Nuclear Physics Brookhaven National Laboratory Snowmass Colorado July 2, 2001. Current BNL HEP Activities. Approaching the Energy Frontier - Higgs, SUSY, ???

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BNL’s Role in High Energy Physics

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  1. BNL’s Role in High Energy Physics Thomas B.W. Kirk Associate Director for High Energy and Nuclear Physics Brookhaven National Laboratory Snowmass Colorado July 2, 2001

  2. Current BNL HEP Activities • Approaching the Energy Frontier -Higgs, SUSY, ??? • D0 Upgrade - Preshower Det. & Software; D0 physics Run 2 startup • Host Lab for US ATLAS Construction & Computing Projects - LHC dets. & physics • Partner Lab for LHC Accelerator Project - SC magnets & cable testing • SNO and MINOS neutrino experiments (collaborators) • Probing beyond the Frontier! -rare processes/precision meas. • Muon (g-2) & rare K decay experiments at AGS - propagator physics! • Understanding the patterns - theory • Strong HEP Theory Group in current topical areas • Riken BNL Research Center with 0.6 Tflops QCDSP Supercomputer • Inventing the tools - future machines & technologies • Accelerator Physics and Superconducting Magnet R&D: • ATF, muon storage ring/collider, HTSCmagnet concepts Key investment!

  3. Near Term BNL HEP Plans (<10 yrs) • Exploring the Energy Frontier -Higgs, SUSY, ??? • D0 search for Higgs/SUSY in the moderate mass regime • US Host Lab for ATLAS LHC physics & Tier-1 Computing Center • Probing beyond the Frontier! -‘RSVP’ • MECO (m -> e direct conversion) - new physics up to 3000 TeV mass scale! • KOPIO & CKM (K0L-> p0n nbar) - golden decay for CP-violation h parameter • Muon electric dipole moment (EDM) search/measurement? • Understanding the patterns - theory • Strong HEP Theory Group in key topical areas, including lattice gauge! • Riken BNL Research Center with 10 Tflops QCDOC next generation SC • Lattice Gauge Center with 20 Tflops QCDOC Supercomputer • Inventing the tools - future machines & technologies • AGS Phase 1 intensity upgrade to a 0.4MW proton driver (~$100M) • Accelerator Physics and Superconducting Magnet R&D: n Superbeam I!

  4. AGS-based proton driver evolution • Parameter AGS Now Phase 1Phase 2 • Total beam power [MW] 0.14 0.401.00 • AGS beam energy [GeV] 24 24 24 • Linac beam energy [GeV] 0.2 1.21.2 • Average current [mA] 6 1742 • Cycle time [ms] 2000 1000 400 • Protons per fill 0.6x1014 1x1014 1x1014 • Average AGS current [A] 3.5 5.9 5.9 • No. of bunches at extraction 6 6 6 • No. of protons per bunch 1x1013 1.7x1013 1.7x1013 • Total bunch area [eVs] 15 5 5 • Beam bunch interval [ms] 33 20 20 n Superbeam II!

  5. Long Term BNL HEP Goals (>10 yrs) • Reaching to the Next Energy Frontier - new physics??? • LHC Luminosity upgrade, including detectors <=> extends LHC discoveries • Linear e+e- Collider (FNAL?) <=> extends LHC physics discoveries • VLHC <=> reaching beyond the few TeV mass scale! • Completing the neutrino story -advanced neutrino exps. • Superbeam neutrino experiments <=> complete the oscillation picture • Muon Storage Ring (BNL) <=> CP-violation in the lepton sector • Understanding the patterns - theory • Strong HEP Theory Group in then topical areas, including lattice gauge! • Riken BNL Research Center with N Pflops QCDxx Supercomputer? • Inventing the tools - future machines & technologies • Accelerator Physics and Superconducting Magnet R&D BNL Goal!

  6. Muon Storage Ring on the BNL Site

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