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https://doi.org/10.18429/JACoW-IPAC2014-TUPRO116
Title Conceptual Design of the Muon Cooling Channel to Incorporate RF Cavities
Authors
  • S.A. Kahn, G. Flanagan, F. Marhauser
    Muons, Inc, Illinois, USA
  • M.L. Lopespresenter, K. Yonehara
    Fermilab, Batavia, Illinois, USA
Abstract A helical cooling channel (HCC) consisting of a pressurized gas absorber imbedded in a magnetic channel that provides solenoid, helical dipole and helical quadrupole fields has been shown to provide six-dimensional phase space reduction for muon beams. Such a channel can be implemented by a helical solenoid (HS) composed of short solenoid coils arranged in a helical pattern. The magnetic channel will provide the desired Bphi, Bz, and dBphi/dr along the reference path. The channel must allow enough space for RF cavities which replace energy lost in the absorber material present for the cooling process. The study will describe how to achieve the desired field while allowing sufficient space for the cavities. The limits to this design imposed by the achievable current density in the coils will be discussed.
Funding Work supported by U.S. DOE STTR/SBIR grant DE-SC00006266
Paper download TUPRO116.PDF [0.807 MB / 3 pages]
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Conference IPAC2014, Dresden, Germany
Series International Particle Accelerator Conference (5th)
Proceedings Link to full IPAC2014 Proccedings
Session Poster Session, Ronaldo Area
Date 17-Jun-14   16:00–18:00
Main Classification 01 Circular and Linear Colliders
Sub Classification A09 Muon Accelerators and Neutrino Factories
Keywords solenoid, dipole, quadrupole, controls, cavity
Publisher JACoW Publishing, Geneva, Switzerland
Editors Christine Petit-Jean-Genaz (CERN, Geneva, Switzerland); Gianluigi Arduini (CERN, Geneva, Switzerland); Peter Michel (HZDR, Dresden, Germany); Volker RW Schaa (GSI, Darmstadt, Germany)
ISBN 978-3-95450-132-8
Published July 2014
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