DocumentCode :
2891093
Title :
Muon acceleration to 750 GeV in the Tevatron tunnel for a 1.5 TeV μ + μ - collider
Author :
Summers, D.J. ; Cremaldi, L.M. ; Godang, R. ; Kipapa, B.R. ; Rice, H.E. ; Palmer, R.B.
Author_Institution :
Univ. of Mississippi, Oxford
fYear :
2007
fDate :
25-29 June 2007
Firstpage :
3178
Lastpage :
3180
Abstract :
Muon acceleration from 30 to 750 GeV in 72 orbits using two rings in the 1000 m radius Tevatron tunnel is explored. The first ring ramps at 400 Hz and accelerates muons from 30 to 400 GeV in 28 orbits using 14 GV of 1.3 GHz superconducting RF. The ring duplicates the Fermilab 400 GeV main ring FODO lattice, which had a 61 m cell length. Muon survival is 80%. The second ring accelerates muons from 400 to 750 GeV in 44 orbits using 8 GV of 1.3 GHz superconducting RF. The 30 T/m main ring quadrupoles are lengthened 87% to 3.3 m. The four main ring dipoles in each half cell are replaced by three dipoles which ramp at 550 Hz from -1.8 T to +1.8T interleaved with two 8 T fixed superconducting dipoles. The ramping and superconducting dipoles oppose each other at 400 GeV and act in unison at 750 GeV. Muon survival is 92%. Two mm copper wire, 0.28 mm grain oriented silicon steel laminations, and a low duty cycle mitigate eddy current losses. Low emittance muon bunches allow small aperatures and permit magnets to ramp with a few thousand volts. Little civil construction is required. The tunnel exists.
Keywords :
accelerator RF systems; accelerator magnets; eddy current losses; muon colliders; particle beam bunching; synchrotrons; FODO lattice; Fermilab; Tevatron tunnel; copper wire; eddy current losses; electron volt energy 30 GeV to 400 GeV; electron volt energy 400 GeV to 750 GeV; frequency 1.3 GHz; frequency 400 Hz; frequency 550 Hz; grain oriented silicon steel laminations; magnets; muon acceleration; muon bunches; muon+-muon- collider; superconducting RF; voltage 14 GV; Acceleration; Copper; Lattices; Mesons; Orbits; Radio frequency; Silicon; Steel; Superconducting filaments and wires; Superconducting magnets;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location :
Albuquerque, NM
Print_ISBN :
978-1-4244-0916-7
Type :
conf
DOI :
10.1109/PAC.2007.4440707
Filename :
4440707
Link To Document :
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