Accès ouvert déclaré
2019
preprint
First Demonstration of Ionization Cooling by the Muon Ionization Cooling Experiment
R. Tsenov, G. Vankova-Kirilova, Y. P. Song, Jingyu Tang, Z. H. Li, R. Bertoni, M. Bonesini, F. Chignoli, R. Mazza, V. Palladino, A. de Bari, D. Orestano, L. Tortora, Y. Kuno, H. Sakamoto, Akira Sato, S. Ishimoto, М. Chung, C. K. Sung, F. Filthaut, D. Joković, D. Maletić, Mihailo Savić, N. Jovančević, Jovana Nikolov, M. Vretenar, S. Ramberger, R. Asfandiyarov, A. Blondel, F. Drielsma, Y. Karadzhov, G. Charnley, N. Collomb, Keith Dumbell, Alan Gallagher, A. Grant, S. Griffiths, T. Hartnett, B. Martlew, A. Moss, A. Muir, I. Mullacrane, A. Oates, P. Owens, G. Stokes, P. A. Warburton, Christopher J. White, D. Adams, V. Bayliss, J. Boehm, T. Bradshaw, C. Brown, M. Courthold, J. Govans, M. Hills, J.-B. Lagrange, C. Macwaters, A. Nichols, R. Preece, S. Ricciardi, Chris Rogers, Timothy Stanley, J. Tarrant, M. A. H. Tucker, S. Watson, A. Wilson, R. Bayes, J. C. Nugent, R. Gamet, P. Cooke, V. Blackmore, D. Colling, A. Dobbs, P.J. Dornan, P. Franchini, C. Hunt, Paul Jurj, A. Kurup, K. Long, J. Martyniak, S. Middleton, J. Pasternak, M. A. Uchida, J.H. Cobb, Campbell Booth, P. Hodgson, J. Langlands, Edward B. Overton, V. Pec, Peter J. Smith, S. Wilbur, G. T. Chatzitheodoridis, Alexander Dick, K. Ronald, C. G. Whyte, A. R. Young, S. B. Boyd, J. R. Greis, T. Lord, C. Pidcott, Ian Taylor, M. Ellis, R. B. S. Gardener, P. Kyberd, JJ Nebrensky, M. Palmer, Holger Witte, D. Adey, A. Bross, D. Bowring, P. Hanlet, A. Liu, David Neuffer, M. Popovic, P. Rubinov, A. DeMello, S.A. Gourlay, Andrew Lambert, D. Li, Tianhuan Luo, S. Prestemon, Steve Virostek, Ben Freemire, Daniel M. Kaplan, T. Mohayai, P. Snopok, Y. Torun, L. Cremaldi, David Sanders, D. J. Summers, L. Coney, G. Hanson, C. Heidt
6Citations signalées, ce qui n’est pas une note de qualité
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Le résumé fourni par la source
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, proton and ion accelerators have yet to be realised. Such beams have the potential to carry the search for new phenomena in lepton-antilepton collisions to extremely high energy and also to provide uniquely well-characterised neutrino beams. A muon beam may be created through the decay of pions produced in the interaction of a proton beam with a target. To produce a high-brightness beam from such a source requires that the phase space volume occupied by the muons be reduced (cooled). Ionization cooling is the novel technique by which it is proposed to cool the beam. The Muon Ionization Cooling Experiment collaboration has constructed a section of an ionization cooling cell and used it to provide the first demonstration of ionization cooling. We present these ground-breaking measurements.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Les sujets associés
Muon and positron interactions and applicationsParticle accelerators and beam dynamicsNeutrino Physics Research