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Related papers: A Muon Collider Scheme Based on Frictional Cooling

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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

We outline in detail a staging scenario for realizing the Neutrino Factory and the Muon Collider. As a first stage we envisage building an intense proton source that can be used to perform high intensity conventional neutrino beam…

High Energy Physics - Experiment · Physics 2019-08-17 Rajendran Raja , D. Cline , J. Gallardo , S. Geer , D. Kaplan , K. McDonald , R. Palmer , A. Sessler , A. N. Skrinsky , D. Summers , M. Tigner , A. Tollestrup , J. Wurtele , M. Zisman

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

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

A muon collider would enable the big jump ahead in energy reach that is needed for a fruitful exploration of fundamental interactions. The challenges of producing muon collisions at high luminosity and 10 TeV centre of mass energy are being…

Accelerator Physics · Physics 2023-11-28 Carlotta Accettura , Dean Adams , Rohit Agarwal , Claudia Ahdida , Chiara Aimè , Nicola Amapane , David Amorim , Paolo Andreetto , Fabio Anulli , Robert Appleby , Artur Apresyan , Aram Apyan , Sergey Arsenyev , Pouya Asadi , Mohammed Attia Mahmoud , Aleksandr Azatov , John Back , Lorenzo Balconi , Laura Bandiera , Roger Barlow , Nazar Bartosik , Emanuela Barzi , Fabian Batsch , Matteo Bauce , J. Scott Berg , Andrea Bersani , Alessandro Bertarelli , Alessandro Bertolin , Fulvio Boattini , Alex Bogacz , Maurizio Bonesini , Bernardo Bordini , Salvatore Bottaro , Luca Bottura , Alessandro Braghieri , Marco Breschi , Natalie Bruhwiler , Xavier Buffat , Laura Buonincontri , Philip Burrows , Graeme Burt , Dario Buttazzo , Barbara Caiffi , Marco Calviani , Simone Calzaferri , Daniele Calzolari , Rodolfo Capdevilla , Christian Carli , Fausto Casaburo , Massimo Casarsa , Luca Castelli , Maria Gabriella Catanesi , Gianluca Cavoto , Francesco Giovanni Celiberto , Luigi Celona , Alessandro Cerri , Gianmario Cesarini , Cari Cesarotti , Grigorios Chachamis , Antoine Chance , Siyu Chen , Yang-Ting Chien , Mauro Chiesa , Anna Colaleo , Francesco Collamati , Gianmaria Collazuol , Marco Costa , Nathaniel Craig , Camilla Curatolo , David Curtin , Giacomo Da Molin , Magnus Dam , Heiko Damerau , Sridhara Dasu , Jorge de Blas , Stefania De Curtis , Ernesto De Matteis , Stefania De Rosa , Jean-Pierre Delahaye , Dmitri Denisov , Haluk Denizli , Christopher Densham , Radovan Dermisek , Luca Di Luzio , Elisa Di Meco , Biagio Di Micco , Keith Dienes , Eleonora Diociaiuti , Tommaso Dorigo , Alexey Dudarev , Robert Edgecock , Filippo Errico , Marco Fabbrichesi , Stefania Farinon , Anna Ferrari , Jose Antonio Ferreira Somoza , Frank Filthaut , Davide Fiorina , Elena Fol , Matthew Forslund , Roberto Franceschini , Rui Franqueira Ximenes , Emidio Gabrielli , Michele Gallinaro , Francesco Garosi , Luca Giambastiani , Alessio Gianelle , Simone Gilardoni , Dario Augusto Giove , Carlo Giraldin , Alfredo Glioti , Mario Greco , Admir Greljo , Ramona Groeber , Christophe Grojean , Alexej Grudiev , Jiayin Gu , Chengcheng Han , Tao Han , John Hauptman , Brian Henning , Keith Hermanek , Matthew Herndon , Tova Ray Holmes , Samuel Homiller , Guoyuan Huang , Sudip Jana , Sergo Jindariani , Yonatan Kahn , Ivan Karpov , David Kelliher , Wolfgang Kilian , Antti Kolehmainen , Kyoungchul Kong , Patrick Koppenburg , Nils Kreher , Georgios Krintiras , Karol Krizka , Gordan Krnjaic , Nilanjana Kumar , Anton Lechner , Lawrence Lee , Qiang Li , Roberto Li Voti , Ronald Lipton , Zhen Liu , Shivani Lomte , Kenneth Long , Jose Lorenzo Gomez , Roberto Losito , Ian Low , Qianshu Lu , Donatella Lucchesi , Lianliang Ma , Yang Ma , Shinji Machida , Fabio Maltoni , Marco Mandurrino , Bruno Mansoulie , Luca Mantani , Claude Marchand , Samuele Mariotto , Stewart Martin-Haugh , David Marzocca , Paola Mastrapasqua , Giorgio Mauro , Andrea Mazzolari , Navin McGinnis , Patrick Meade , Barbara Mele , Federico Meloni , Matthias Mentink , Claudia Merlassino , Elias Metral , Rebecca Miceli , Natalia Milas , Nikolai Mokhov , Alessandro Montella , Tim Mulder , Riccardo Musenich , Marco Nardecchia , Federico Nardi , Niko Neufeld , David Neuffer , Yasar Onel , Domizia Orestano , Daniele Paesani , Simone Pagan Griso , Mark Palmer , Paolo Panci , Giuliano Panico , Rocco Paparella , Paride Paradisi , Antonio Passeri , Nadia Pastrone , Antonello Pellecchia , Fulvio Piccinini , Alfredo Portone , Karolos Potamianos , Marco Prioli , Lionel Quettier , Emilio Radicioni , Raffaella Radogna , Riccardo Rattazzi , Diego Redigolo , Laura Reina , Elodie Resseguie , Jürgen Reuter , Pier Luigi Ribani , Cristina Riccardi , Lorenzo Ricci , Stefania Ricciardi , Luciano Ristori , Tania Natalie Robens , Werner Rodejohann , Chris Rogers , Marco Romagnoni , Kevin Ronald , Lucio Rossi , Richard Ruiz , Farinaldo S. Queiroz , Filippo Sala , Paola Sala , Jakub Salko , Paola Salvini , Ennio Salvioni , Jose Santiago , Ivano Sarra , Francisco Javier Saura Esteban , Jochen Schieck , Daniel Schulte , Michele Selvaggi , Carmine Senatore , Abdulkadir Senol , Daniele Sertore , Lorenzo Sestini , Varun Sharma , Vladimir Shiltsev , Jing Shu , Federica Maria Simone , Rosa Simoniello , Kyriacos Skoufaris , Massimo Sorbi , Stefano Sorti , Anna Stamerra , Steinar Stapnes , Giordon Holtsberg Stark , Marco Statera , Bernd Stechauner , Daniel Stolarski , Diktys Stratakis , Shufang Su , Wei Su , Olcyr Sumensari , Xiaohu Sun , Raman Sundrum , Maximilian J Swiatlowski , Alexei Sytov , Benjamin T. Kuchma , Tim M. P. Tait , Jian Tang , Jingyu Tang , Andrea Tesi , Pietro Testoni , Brooks Thomas , Emily Anne Thompson , Riccardo Torre , Ludovico Tortora , Luca Tortora , Sokratis Trifinopoulos , Ilaria Vai , Riccardo Valente , Riccardo Umberto Valente , Marco Valente , Alessandro Valenti , Nicolò Valle , Ursula van Rienen , Rosamaria Venditti , Arjan Verweij , Piet Verwilligen , Ludovico Vittorio , Paolo Vitulo , Liantao Wang , Hannsjorg Weber , Mariusz Wozniak , Richard Wu , Yongcheng Wu , Andrea Wulzer , Keping Xie , Akira Yamamoto , Yifeng Yang , Katsuya Yonehara , Angela Zaza , Xiaoran Zhao , Alexander Zlobin , Davide Zuliani , Jose Zurita

A high-energy muon collider scenario requires a "final cooling" system that reduces transverse emittance by a factor of ~10 while allowing longitudinal emittance increase. The baseline approach has low-energy transverse cooling within…

Accelerator Physics · Physics 2015-02-11 David Neuffer

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

Muon Colliders have unique technical and physics advantages and disadvantages when compared with both hadron and electron machines. They should thus be regarded as complementary. Parameters are given of 4 TeV and 0.5 TeV high luminosity…

acc-phys · Physics 2012-08-29 R. B. Palmer , A. Sessler , A. Skrinsky , A. Tollestrup

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

Muon Colliders have unique technical and physics advantages and disadvantages when compared with both hadron and electron machines. They should thus be regarded as complementary. Parameters are given of 4 TeV and 0.5 TeV high luminosity…

A complete scheme for production, cooling, acceleration, and ring for a 1.5 TeV center of mass muon collider is presented, together with parameters for two higher energy machines. The schemes starts with the front end of a proposed neutrino…

Fast muon beam six dimensional (6D) phase space cooling is essential for muon colliders. The Helical Cooling Channel (HCC) uses hydrogen-pressurized RF cavities imbedded in a magnet system with solenoid, helical dipole, and helical…

Accelerator Physics · Physics 2012-02-06 K. Yonehara , R. P. Johnson , Y. S. Derbenev

Muon storage rings have been proposed for use as sources of intense high-energy neutrino beams and as the basis for muon colliders. Phase-space compression (cooling) of the muon beam prior to acceleration and storage is needed to optimise…

High Energy Physics - Experiment · Physics 2008-11-26 P. Drumm

Over the last decade there has been significant progress in developing the concepts and technologies needed to produce, capture, accelerate and collide high intensity beams of muons. At present, a high-luminosity multi-TeV muon collider…

Accelerator Physics · Physics 2014-11-20 Vladimir Shiltsev

A possible alternative way of producing muons (or other unstable particles) for colliders is proposed. It consists in colliding beams in a "chasing beam" configuration, i.e. collisions of two beams having the same direction but with…

Accelerator Physics · Physics 2014-12-23 G. Mambriani , R. Coisson

Parameters are given of 4 TeV and 0.5 TeV (c-of-m) high luminosity muon-muon Colliders. We discuss the various systems, starting from the proton accelerator needed to generate the muons and proceeding through muon cooling, acceleartion and…

Accelerator Physics · Physics 2009-09-25 R. B. Palmer , J. C. Gallardo

We describe the physics opportunities and technical challenges of a muon collider as a tool for exploring high energy physics phenomena.

Accelerator Physics · Physics 2007-05-23 Bruce J. King

The Muon Collider, recently highlighted as Recommendation 1 in the U.S. National Academies report on Elementary Particle Physics, offers a unique opportunity for fixed-target experiments with high energy and luminosity. This paper outlines…

Nuclear Experiment · Physics 2026-01-07 Henry T. Klest

High brilliance muon beams are needed for future facilities such as a Neutrino Factory, an Higgs-factory or a multi-TeV Muon Collider. The R&D path involves many aspects, of which cooling of the incoming muon beams is essential.

Accelerator Physics · Physics 2016-06-03 M. Bonesini