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Muon cooling is the main technological obstacle in the building of a muon collider. A muon cooling scheme based on Frictional Cooling holds promise in overcoming this obstacle. An experiment designed to demonstrate the Frictional Cooling…

Accelerator Physics · Physics 2009-08-21 R. Galea , A. Caldwell , L. Newburgh

Muon Colliders would usher in a new era of scientific investigation in the field of high energy particle physics. The cooling of muon beams is proving to be the greatest obstacle in the realization of a Muon Collider. Monte Carlo…

Accelerator Physics · Physics 2009-02-02 H. Abramowicz , A. Caldwell , R. Galea , S. Schlenstedt

One of the focuses of research and development towards the construction of a muon collider is muon beam preparation. Simulation of frictional cooling shows that it can achieve the desired emittance reduction to produce high-luminosity muon…

Accelerator Physics · Physics 2012-04-23 Daniel Greenwald , Allen Caldwell

Low-energy muon beams are useful for a range of physics experiments. We consider the production of low-energy muon beams with small energy spreads using frictional cooling. As the input beam, we take a surface muon source such as that at…

Accelerator Physics · Physics 2015-05-18 Yu Bao , Allen Caldwell , Daniel Greenwald , Guoxing Xia

Muon colliders and neutrino factories are attractive options for future facilities aimed at achieving the highest lepton-antilepton collision energies and precision measurements of parameters of the Higgs boson and the neutrino mixing…

Accelerator Physics · Physics 2019-08-14 Daniel M. Kaplan

Muon colliders and neutrino factories are attractive options for achieving the highest lepton-antilepton collision energies and the most precise measurements of the parameters of the neutrino mixing matrix. The performance and cost of these…

Accelerator Physics · Physics 2007-05-23 Daniel M. Kaplan

The compressed baryonic matter (CBM) experiment at the future FAIR accelerator facility near Darmstadt, Germany, aims at the investigation of baryonic matter at highest net baryon densities but moderate temperatures, by colliding heavy-ions…

Nuclear Experiment · Physics 2011-12-05 A. Prakash , P. P. Bhaduri , S. Chattopadhyay , A. Dubey , B. K. Singh

Muon colliders and neutrino factories are attractive options for future facilities aimed at achieving the highest lepton-antilepton collision energies and precision measurements of parameters of the Higgs boson and the neutrino mixing…

Accelerator Physics · Physics 2019-10-23 Daniel M. Kaplan

The MuCool R&D program is described. The aim of MuCool is to develop all key pieces of hardware required for ionization cooling of a muon beam. This effort will lead to a more detailed understanding of the construction and operating costs…

Accelerator Physics · Physics 2019-08-14 Daniel M. Kaplan

We describe the status of our effort to realize a first neutrino factory and the progress made in understanding the problems associated with the collection and cooling of muons towards that end. We summarize the physics that can be done…

High Energy Physics - Experiment · Physics 2009-09-29 M. M. Alsharo'a

The muon collider has the potential to be a powerful tool for the exploration of frontiers in particle physics. In order to reach high luminosity, the 6D emittance of the muon beam needs to be reduced by several orders of magnitude. The…

Accelerator Physics · Physics 2024-09-06 Ruihu Zhu , Chris Rogers , Jiancheng Yang , He Zhao , Cheng Guo , Jiangdong Li

The MuCool R&D program is described. The aim of MuCool is to develop all key pieces of hardware required for ionization cooling of a muon beam. This effort will lead to a more detailed understanding of the construction and operating costs…

Accelerator Physics · Physics 2009-09-29 Daniel M. Kaplan

A muon collider would be a powerful tool for exploring the energy-frontier with leptons, and would complement the studies now under way at the LHC. Such a device would offer several important benefits. Muons, like electrons, are point…

Accelerator Physics · Physics 2011-09-15 Michael S. Zisman

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…

Accelerator Physics · Physics 2019-07-22 M. Bogomilov , R. Tsenov , G. Vankova-Kirilova , Y. P. Song , J. Y. 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 , A. Sato , S. Ishimoto , M. Chung , C. K. Sung , F. Filthaut , D. Jokovic , D. Maletic , M. Savic , N. Jovancevic , J. Nikolov , M. Vretenar , S. Ramberger , R. Asfandiyarov , A. Blondel , F. Drielsma , Y. Karadzhov , G. Charnley , N. Collomb , K. Dumbell , A. Gallagher , A. Grant , S. Griffiths , T. Hartnett , B. Martlew , A. Moss , A. Muir , I. Mullacrane , A. Oates , P. Owens , G. Stokes , P. Warburton , C. White , D. Adams , V. Bayliss , J. Boehm , T. W. Bradshaw , C. Brown , M. Courthold , J. Govans , M. Hills , J. -B. Lagrange , C. Macwaters , A. Nichols , R. Preece , S. Ricciardi , C. Rogers , T. Stanley , J. Tarrant , M. Tucker , S. Watson , A. Wilson , R. Bayes , J. C. Nugent , F. J. P. Soler , R. Gamet , P. Cooke , V. J. Blackmore , D. Colling , A. Dobbs , P. Dornan , P. Franchini , C. Hunt , P. B. Jurj , A. Kurup , K. Long , J. Martyniak , S. Middleton , J. Pasternak , M. A. Uchida , J. H. Cobb , C. N. Booth , P. Hodgson , J. Langlands , E. Overton , V. Pec , P. J. Smith , S. Wilbur , G. T. Chatzitheodoridis , A. J. Dick , K. Ronald , C. G. Whyte , A. R. Young , S. Boyd , J. R. Greis , T. Lord , C. Pidcott , I. Taylor , M. Ellis , R. B. S. Gardener , P. Kyberd , J. J. Nebrensky , M. Palmer , H. Witte , D. Adey , A. D. Bross , D. Bowring , P. Hanlet , A. Liu , D. Neuffer , M. Popovic , P. Rubinov , A. DeMello , S. Gourlay , A. Lambert , D. Li , T. Luo , S. Prestemon , S. Virostek , B. Freemire , D. M. Kaplan , T. A. Mohayai , P. Snopok , Y. Torun , L. M. Cremaldi , D. A. Sanders , D. J. Summers , L. R. Coney , G. G. Hanson , C. Heidt

An intense beam of muons is needed to provide a luminosity on the order of 10$^{34}$ cm$^{-2}$s$^{-1}$ for a multi-TeV collider. Because muons produced by colliding a multi-MW proton beam with a target made of carbon or mercury have a large…

Six-dimensional ionization cooling of muons is essential for muon colliders and possibly beneficial for neutrino factories. An experiment to demonstrate six-dimensional ionization cooling using practical apparatus is presented. It exploits…

Accelerator Physics · Physics 2019-08-13 Daniel M. Kaplan

Muon-based accelerators have the potential to enable facilities at both the Intensity and the Energy Frontiers. Muon storage rings can serve as high precision neutrino sources, and a muon collider is an ideal technology for a TeV or…

Accelerator Physics · Physics 2015-11-05 Mary Anne Cummings

Muon storage rings have been proposed for use as a source of high-energy neutrino beams (the Neutrino Factory) and as the basis for a high-energy lepton-antilepton collider (the Muon Collider). The Neutrino Factory is widely believed to be…

Accelerator Physics · Physics 2007-07-16 D. M. Kaplan , K. Long

A multi-TeV muon collider offers a spectacular opportunity in the direct exploration of the energy frontier. Offering a combination of unprecedented energy collisions in a comparatively clean leptonic environment, a high energy muon…

High Energy Physics - Experiment · Physics 2023-08-10 K. M. Black , S. Jindariani , D. Li , F. Maltoni , P. Meade , D. Stratakis , D. Acosta , R. Agarwal , K. Agashe , C. Aime , D. Ally , A. Apresyan , A. Apyan , P. Asadi , D. Athanasakos , Y. Bao , E. Barzi , N. Bartosik , L. A. T. Bauerdick , J. Beacham , S. Belomestnykh , J. S. Berg , J. Berryhill , A. Bertolin , P. C. Bhat , M. E. Biagini , K. Bloom , T. Bose , A. Bross , E. Brost , N. Bruhwiler , L. Buonincontri , D. Buttazzo , V. Candelise , A. Canepa , L. Carpenter , M. Casarsa , F. Celiberto , C. Cesarotti , G. Chachamis , Z. Chacko , P. Chang , S. V. Chekanov , T. Y. Chen , M. Chiesa , T. Cohen , M. Costa , N. Craig , A. Crivellin , C. Curatolo , D. Curtin , G. Da Molin , S. Dasu , A. de Gouvea , D. Denisov , R. Dermisek , K. F. Di Petrillo , T. Dorigo , J. M. Duarte , V. D. Elvira , R. Essig , P. Everaerts , J. Fan , M. Felcini , G. Fiore , D. Fiorina , M. Forslund , R. Franceschini , M. V. Garzelli , C. E. Gerber , L. Giambastiani , D. Giove , S. Guiducci , T. Han , K. Hermanek , C. Herwig , J. Hirschauer , T. R. Holmes , S. Homiller , L. A. Horyn , A. Ivanov , B. Jayatilaka , H. Jia , C. K. Jung , Y. Kahn , D. M. Kaplan , M. Kaur , M. Kawale , P. Koppenburg , G. Krintiras , K. Krizka , B. Kuchma , L. Lee , L. Li , P. Li , Q. Li , W. Li , R. Lipton , Z. Liu , S. Lomte , Q. Lu , D. Lucchesi , T. Luo , K. Lyu , Y. Ma , P. A. N. Machado , C. Madrid , D. J. Mahon , A. Mazzacane , N. McGinnis , C. McLean , B. Mele , F. Meloni , S. C. Middleton , R. K. Mishra , N. Mokhov , A. Montella , M. Morandin , S. Nagaitsev , F. Nardi , M. S. Neubauer , D. V. Neuffer , H. Newman , R. Ogaz , I. Ojalvo , I. Oksuzian , T. Orimoto , B. Ozek , K. Pachal , S. Pagan Griso , P. Panci , V. Papadimitriou , N. Pastrone , K. Pedro , F. Pellemoine , A. Perloff , D. Pinna , F. Piccinini , Marc-Andre Pleier , S. Posen , K. Potamianos , S. Rappoccio , M. Reece , L. Reina , A. Reinsvold Hall , C. Riccardi , L. Ristori , T. Robens , R. Ruiz , P. Sala , D. Schulte , L. Sestini , V. Shiltsev , P. Snopok , G. Stark , J. Stupak , S . Su , R. Sundrum , M. Swiatlowski , M. J. Syphers , A. Taffard , W. Thompson , Y. Torun , C. G. Tully , I. Vai , M. Valente , U. van Rienen , R. van Weelderen , G. Velev , N. Venkatasubramanian , L. Vittorio , C. Vuosalo , X. Wang , H. Weber , R. Wu , Y. Wu , A. Wulzer , K. Xie , S. Xie , R. Yohay , K. Yonehara , F. Yu , A. V. Zlobin , D. Zuliani , J. Zurita
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