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Related papers: MICE: The International Muon Ionization Cooling Ex…

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Possible application for muon experiments such as mu2e is discussed of the initial part of the ionization cooling channel originally developed for muon collider. It is shown that with the FNAL Booster as the proton driver the mu2e…

Accelerator Physics · Physics 2014-09-22 Y. Alexahin , D. Neuffer , E. Prebys

A generation of neutrino experiments have established that neutrinos mix and probably have mass. The mixing phenomenon points to processes beyond those of the Standard Model, possibly at the Grand Unification energy scale. A extensive…

High Energy Physics - Phenomenology · Physics 2007-05-23 M. Apollonio

A muon collider would open new frontiers of investigation in high energy particle physics, allowing precision measurements to be made at the TeV energy frontier. One of the greatest challenges to constructing a muon collider is the…

Accelerator Physics · Physics 2010-12-20 Daniel Greenwald , Yu Bao , Allen Caldwell , Daniel Kollar

A Neutrino Factory requires an intense and well-cooled (in transverse phase space) muon beam. We discuss a hybrid approach for a linear 4D cooling channel consisting of high-pressure gas-filled RF cavities- potentially allowing high…

Accelerator Physics · Physics 2014-11-21 Juan C. Gallardo , Michael S. Zisman

Progress on six dimensional ionization muon cooling with relatively small rings of magnets is described. Lattices being explored include scaling sector cyclotrons with edge focusing and strong focusing, fixed field alternating gradient…

A new scheme to produce very low emittance muon beams using a positron beam of about 45~GeV interacting on electrons on target is presented. One of the innovative topics to be investigated is the behaviour of the positron beam stored in a…

Accelerator Physics · Physics 2018-08-01 M. Boscolo , M. Antonelli , O. R. Blanco-Garcia , S. Guiducci , S. Liuzzo , P. Raimondi , F. Collamati

Over the last decade there has been significant progress in developing the concepts and technologies needed to produce, capture and accelerate O(1021) muons/year. This development prepares the way for a new type of neutrino source (Neutrino…

Accelerator Physics · Physics 2012-02-13 S. Geer

A low-energy medium-luminosity Muon Collider (MC) is being studied as a possible Higgs Factory (HF). Electrons from muon decays will deposit more than 300 kW in superconducting magnets of the HF collider ring. This imposes significant…

ALICE (A Large Ion Collider Experiment) at the CERN Large Hadron Collider (LHC) is designed to study p-p and Pb-Pb collisions at ultra-relativistic energies. ALICE is equipped with a Muon Spectrometer (MS) to study the heavy charmonia in…

Instrumentation and Detectors · Physics 2023-08-09 Livia Terlizzi

The potential of muon beams for high energy physics applications is described along with the challenges of producing high quality muon beams. Two proposed approaches for delivering high intensity muon beams, a proton driver source and a…

Accelerator Physics · Physics 2019-09-26 Manuela Boscolo , Jean Pierre Delahaye , Mark Palmer

A neutrino factory or muon collider requires the capture and cooling of a large number of muons. Scenarios for capture, bunching, phase-energy rotation and initial cooling of {\mu}'s produced from a proton source target have been developed,…

Accelerator Physics · Physics 2016-12-30 D. Neuffer , Y. Alexahin

The ALICE experiment is dedicated to the study of the quark gluon plasma in heavy-ion collisions at the CERN LHC. The Muon Forward Tracker (MFT) is under consideration by the ALICE experiment to be part of its program of detectors upgrade…

High Energy Physics - Experiment · Physics 2019-08-14 Antonio Uras

Neutrino beam with about 300 MeV in energy, high-flux and medium baseline is considered a rational choice for measuring CP violation before the more powerful Neutrino Factory will be built. Following this concept, a unique neutrino beam…

Muon colliders have been proposed for the next generation of particle accelerators that study high-energy physics at the energy and intensity frontiers. In this paper we study a possible implementation of muon ionization cooling,…

A large admittance sector cyclotron filled with LiH wedges surrounded by helium or hydrogen gas is explored. Muons are cooled as they spiral adiabatically into a central swarm. As momentum approaches zero, the momentum spread also…

Accelerator Physics · Physics 2009-11-11 D. J. Summers , S. B. Bracker , L. M. Cremaldi , R. Godang , R. B. Palmer

The International Muon Collider Collaboration (IMCC) [1] was established in 2020 following the recommendations of the European Strategy for Particle Physics (ESPP) and the implementation of the European Strategy for Particle…

Accelerator Physics · Physics 2025-01-29 C. Accettura , S. Adrian , R. Agarwal , C. Ahdida , C. Aimé , A. Aksoy , G. L. Alberghi , S. Alden , N. Amapane , D. Amorim , P. Andreetto , F. Anulli , R. Appleby , A. Apresyan , P. Asadi , M. Attia Mahmoud , B. Auchmann , J. Back , A. Badea , K. J. Bae , E. J. Bahng , L. Balconi , F. Balli , L. Bandiera , C. Barbagallo , R. Barlow , C. Bartoli , N. Bartosik , E. Barzi , F. Batsch , M. Bauce , M. Begel , J. S. Berg , A. Bersani , A. Bertarelli , F. Bertinelli , A. Bertolin , P. Bhat , C. Bianchi , M. Bianco , W. Bishop , K. Black , F. Boattini , A. Bogacz , M. Bonesini , B. Bordini , P. Borges de Sousa , S. Bottaro , L. Bottura , S. Boyd , M. Breschi , F. Broggi , M. Brunoldi , X. Buffat , L. Buonincontri , P. N. Burrows , G. C. Burt , D. Buttazzo , B. Caiffi , S. Calatroni , M. Calviani , S. Calzaferri , D. Calzolari , C. Cantone , R. Capdevilla , C. Carli , C. Carrelli , F. Casaburo , M. Casarsa , L. Castelli , M. G. Catanesi , L. Cavallucci , G. Cavoto , F. G. Celiberto , L. Celona , A. Cemmi , S. Ceravolo , A. Cerri , F. Cerutti , G. Cesarini , C. Cesarotti , A. Chancé , N. Charitonidis , M. Chiesa , P. Chiggiato , V. L. Ciccarella , P. Cioli Puviani , A. Colaleo , F. Colao , F. Collamati , M. Costa , N. Craig , D. Curtin , L. D'Angelo , G. Da Molin , H. Damerau , S. Dasu , J. de Blas , S. De Curtis , H. De Gersem , T. Del Moro , J. -P. Delahaye , D. Denisov , H. Denizli , R. Dermisek , P. Desiré Valdor , C. Desponds , L. Di Luzio , E. Di Meco , K. F. Di Petrillo , I. Di Sarcina , E. Diociaiuti , T. Dorigo , K. Dreimanis , T. du Pree , T. Edgecock , S. Fabbri , M. Fabbrichesi , S. Farinon , G. Ferrand , J. A. Ferreira Somoza , M. Fieg , F. Filthaut , P. Fox , R. Franceschini , R. Franqueira Ximenes , M. Gallinaro , M. Garcia-Sciveres , L. Garcia-Tabares , R. Gargiulo , C. Garion , M. V. Garzelli , M. Gast , C. E. Gerber , L. Giambastiani , A. Gianelle , E. Gianfelice-Wendt , S. Gibson , S. Gilardoni , D. A. Giove , V. Giovinco , C. Giraldin , A. Glioti , A. Gorzawski , M. Greco , C. Grojean , A. Grudiev , E. Gschwendtner , E. Gueli , N. Guilhaudin , C. Han , T. Han , J. M. Hauptman , M. Herndon , A. D. Hillier , M. Hillman , T. R. Holmes , S. Homiller , S. Jana , S. Jindariani , S. Johannesson , B. Johnson , O. R. Jones , P. -B. Jurj , Y. Kahn , R. Kamath , A. Kario , I. Karpov , D. Kelliher , W. Kilian , R. Kitano , F. Kling , A. Kolehmainen , K. C. Kong , J. Kosse , G. Krintiras , K. Krizka , N. Kumar , E. Kvikne , R. Kyle , E. Laface , K. Lane , A. Latina , A. Lechner , J. Lee , L. Lee , S. W. Lee , T. Lefevre , E. Leonardi , G. Lerner , P. Li , Q. Li , T. Li , W. Li , R. Li Voti , M. Lindroos , R. Lipton , D. Liu , M. Liu , Z. Liu , A. Lombardi , S. Lomte , K. Long , L. Longo , J. Lorenzo , R. Losito , I. Low , X. Lu , D. Lucchesi , T. Luo , A. Lupato , E. Métral , K. Mękała , Y. Ma , J. M. Mańczak , S. Machida , T. Madlener , L. Magaletti , M. Maggi , H. Mainaud Durand , F. Maltoni , M. Mandurrino , C. Marchand , F. Mariani , S. Marin , S. Mariotto , S. Martin-Haugh , M. R. Masullo , G. S. Mauro , A. Mazzolari , B. Mele , F. Meloni , X. Meng , M. Mentink , R. Miceli , N. Milas , A. Mohammadi , D. Moll , A. Montella , M. Morandin , M. Morrone , T. Mulder , R. Musenich , M. Nardecchia , F. Nardi , D. Neuffer , D. Newbold , D. Novelli , M. Olvegård , Y. Onel , D. Orestano , J. Osborne , S. Otten , Y. M. Oviedo Torres , D. Paesani , S. Pagan Griso , D. Pagani , K. Pal , M. Palmer , A. Pampaloni , P. Panci , P. Pani , Y. Papaphilippou , R. Paparella , P. Paradisi , A. Passeri , N. Pastrone , A. Pellecchia , F. Piccinini , H. Piekarz , T. Pieloni , J. Plouin , A. Portone , K. Potamianos , J. Potdevin , S. Prestemon , T. Puig , J. Qiang , L. Quettier , T. R. Rabemananjara , E. Radicioni , R. Radogna , I. C. Rago , A. Ratkus , E. Resseguie , J. Reuter , P. L. Ribani , C. Riccardi , S. Ricciardi , T. Robens , Y. Robert , C. Roger , J. Rojo , M. Romagnoni , K. Ronald , B. Rosser , C. Rossi , L. Rossi , L. Rozanov , M. Ruhdorfer , R. Ruiz , F. S. Queiroz , S. Saini , F. Sala , C. Salierno , T. Salmi , P. Salvini , E. Salvioni , N. Sammut , C. Santini , A. Saputi , I. Sarra , G. Scarantino , H. Schneider-Muntau , D. Schulte , J. Scifo , T. Sen , C. Senatore , A. Senol , D. Sertore , L. Sestini , R. C. Silva Rêgo , F. M. Simone , K. Skoufaris , G. Sorbello , M. Sorbi , S. Sorti , L. Soubirou , D. Spataro , A. Stamerra , S. Stapnes , G. Stark , M. Statera , B. M. Stechauner , S. Su , W. Su , X. Sun , A. Sytov , J. Tang , J. Tang , R. Taylor , H. Ten Kate , P. Testoni , L. S. Thiele , R. Tomas Garcia , M. Topp- Mugglestone , T. Torims , R. Torre , L. T. Tortora , S. Trifinopoulos , S. -A. Udongwo , I. Vai , R. U. Valente , U. van Rienen , R. van Weelderen , M. Vanwelde , G. Velev , R. Venditti , A. Vendrasco , A. Verna , A. Verweij , P. Verwilligen , Y. Villamzar , L. Vittorio , P. Vitulo , I. Vojskovic , D. Wang , L. -T. Wang , X. Wang , M. Wendt , M. Widorski , M. Wozniak , Y. Wu , A. Wulzer , K. Xie , Y. Yang , Y. C. Yap , K. Yonehara , H. D. Yoo , Z. You , M. Zanetti , A. Zaza , L. Zhang , R. Zhu , A. Zlobin , D. Zuliani , J. F. Zurita

The Muon Collider, proposed under the International Muon Collider Collaboration (IMCC), represents a groundbreaking advancement in circular collider technology. By using muons instead of protons or electrons, this collider has the potential…

We propose here a proposal to connect neutrino and energy frontiers, by exploiting collimated muon beams for neutrino oscillations, which generate symmetric neutrino and antineutrino sources: $\mu^+\rightarrow e^+\,\bar{\nu}_{\mu}\,…

High Energy Physics - Phenomenology · Physics 2023-10-31 Alim Ruzi , Tianyi Yang , Dawei Fu , Sitian Qian , Leyun Gao , Qiang Li

Low-energy medium-luminosity Muon Collider (MC) is being studied as a possible Higgs Factory (HF). Electrons from muon decays will deposit more than 300 kW in superconducting magnets of the HF collider ring. This imposes significant…

Accelerator Physics · Physics 2018-11-14 N. V. Mokhov , V. V. Kashikhin , S. I. Striganov , I. S. Tropin , A. V. Zlobin
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