The Mice Muon Beam On Isis And The Beam-Line Instrumentation Of The Muon Ionization Cooling Experiment

Mariyan Bogomilov,Yordan Karadzhov,Dimitar Ivanov Kolev,I. Russinov,Roumen V. Tsenov,G. Vankova-Kirilova,Liqin Wang,Fengyu Xu,Shi Zheng,Roberto Bertoni,M. Bonesini,Federico Ferri,G. Lucchini,Raffaele Mazza,Fabio Paleari,F. Strati,Vittorio Palladino,G. Cecchet,Antonio De Bari,M. Capponi,A. Cirillo,A. Iaciofano,Alessandro Manfredini,M. Parisi,Domizia Orestano,Fr C. Pastore,Alessandra Tonazzo,L. Tortora,Yoshiharu Mori, Y. Kuno,Hideyuki Sakamoto,A. Sato,Takaaki Yano,Makoto Yoshida,Shigeru Ishimoto,Sohyamagata Suzuki,Koji Yoshimura,Frank Filthaut,Roland Garoby,Simone S. Gilardoni,Peter Gruber,Klaus Hanke,Helmut D. Haseroth,Patrick Janot,Alessandra M. Lombardi,Suitbert Ramberger,Maurizio Vretenar,P. Béné,Alain P. Blondel,Franck R. Cadoux,Jean Sébastien Graulich,Vladimir M. Grichine,Edda M. Gschwendtner,F. Masciocchi,R. Sandström,V. Verguilov,H. Wisting,C. Petitjean,Rebecca Seviour,John K. Alexander,G. D. Charnley,Norbert A. Collomb,Stéphane A. Griffiths,B. G. Martlew,Andrew J. Moss,I. D. Mullacrane,A. Oates,P. Owens,Colin J. White,S. York,Don J. Adams,Robert J. Apsimon,P. Barclay,D. Elwyn Baynham,Tom W. Bradshaw,M. J D Courthold,Paul V. Drumm,T. R. Edgecock,T. M. Hayler,M. Hills,Yu Ivaniouchenkov,Arwyn R D Jones,A. J. Lintern,Craig P. Macwaters,Charles A. Nelson,Alan L. Nichols,R. M. Preece,Stefania Ricciardi,James H. Rochford,Chris T. Rogers,W. Spensley,J. Tarrant,K. Tilley,Sharon E. Watson,Antony J. Wilson,David Forrest,F. J. P. Soler,K. A. Walaron,Philip A. Cooke,R. Gamet,Androula Alekou,Marco Apollonio,Geoff J. Barber,R. Beuselinck,Daniel Edward Clark,I. W. Clark,David J. Colling,A. J. Dobbs,PJ J. Dornan,S. Fayer,A. Fish,R. Hare,Sarah Greenwood,Ashu K. Jamdagni,V. Kasey,M. Tahir Khaleeq,James D G Leaver,Kenneth Long,Edward A. Mckigney,Takehiko Matsushita,Jaroslaw Pasternak,T. Sashalmi,T. Savidge,M. Takahashi,Victoria J. Blackmore,T. Carlisle,J. H. Cobb,Wing Lau,Mark Alastair M Rayner,Christopher D. Tunnell,Holger Witte,S. Yang,C. N. Booth,P. N. Hodgson,L. Howlett,Randy A. Nicholson,Edward Overton,Matthew D M Robinson,P. N. Smith,David Adey,John Back,Smart B. Boyd,Paul F. Harrison,Malcolm R E Ellis,Paul Kyberd,M. Littlefield,J. J. Nebrensky,Alan D. Bross,Steve Geer,David V. Neuffer,Alfred L. Moretti,Milorad B. Popovic,Mary Anne Clare Cummings,Thomas J. Roberts,Allan J. Demello,Michael Anthony Green,Derun Li,Steve P. Virostek,Michael S. Zisman,Ben Freemire,Pierrick M. Hanlet,Dazhang Huang,G. Kafka,Daniel M. Kapĺan,Pavel Snopok,Yaǧmur Torun,S. Blot,Youngkee Kim,Ulisse Bravar,Yasar Önel,David B. Cline,Yasuo Fukui,Kevin Lee,X. Yang,Robert A. Rimmer,L. M. Cremaldi,Gh Grégoire,Terrence L. Hart,David A. Sanders,Don J. Summers,Linda R. Coney,R. R. Fletcher,Gail G. Hanson,C. Heidt,Juan Carlos Gallardo,Stephen Alan Kahn,Harold G. Kirk,Robert B. Palmer

JOURNAL OF INSTRUMENTATION(2012)

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摘要
The international Muon Ionization Cooling Experiment (MICE), which is under construction at the Rutherford Appleton Laboratory (RAL), will demonstrate the principle of ionization cooling as a technique for the reduction of the phase-space volume occupied by a muon beam. Ionization cooling channels are required for the Neutrino Factory and the Muon Collider. MICE will evaluate in detail the performance of a single lattice cell of the Feasibility Study 2 cooling channel. The MICE Muon Beam has been constructed at the ISIS synchrotron at RAL, and in MICE Step I, it has been characterized using the MICE beam-instrumentation system. In this paper, the MICE Muon Beam and beam-line instrumentation are described. The muon rate is presented as a function of the beam loss generated by the MICE target dipping into the ISIS proton beam. For a 1 V signal from the ISIS beam-loss monitors downstream of our target we obtain a 30 KHz instantaneous muon rate, with a neglible pion contamination in the beam.
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Instrumentation for particle accelerators and storage rings - low energy (linear accelerators, cyclotrons, electrostatic accelerators), Calorimeters, Instrumentation and methods for time-of-flight (TOF) spectroscopy, Accelerator Applications
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