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Related papers: Muon Collider Forum Report

200 papers

A proton-proton collider with center of mass energy around 100 TeV is the energy frontier machine that is likely to succeed the LHC. One of the primary physics goals will be the continued exploration of weak scale naturalness. Here we focus…

High Energy Physics - Phenomenology · Physics 2015-06-22 Timothy Cohen , Raffaele Tito D'Agnolo , Mike Hance , Hou Keong Lou , Jay G. Wacker

Cosmic-rays with energies up to $3\times10^{20}$ eV have been observed. The nuclear composition of these cosmic rays is unknown but if the incident nuclei are protons then the corresponding center of mass energy is $\sqrt{s_{nn}} = 700$…

Nuclear Experiment · Physics 2009-11-18 Spencer R. Klein

Dark Matter is a necessary ingredient for a complete theory of Nature, which has so far remained elusive in laboratory searches for new particles. Searches at current and future colliders are in principle a promising way to search for…

High Energy Physics - Phenomenology · Physics 2023-07-26 Roberto Franceschini , Xiaoran Zhao

We describe a class of models of electroweak symmetry breaking that involves strong dynamics and top quark condensation. A new scheme based upon a seesaw mechanism appears particularly promising. Various implications for the first-stage…

High Energy Physics - Phenomenology · Physics 2009-10-31 Christopher T. Hill

We discuss the technical feasibility, key machine parameters and major challenges of a 14 TeV c.m.e. muon-muon collider in the LHC tunnel. The luminosity of the collider is evaluated for three alternative muon sources - the PS synchrotron,…

Accelerator Physics · Physics 2018-12-05 D. Neuffer , V. Shiltsev

The "precision" frontier, which is closely related to the "intensity" frontier, provides a complementary path to the discovery of physics beyond the Standard Model. Several examples of discoveries that would change our view of the physical…

High Energy Physics - Experiment · Physics 2009-10-29 B. Lee Roberts

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

We have examined inclusive $\mu^+\mu^- \rightarrow \mu^+ \mu^- + E_{\mathrm{miss}}$ and annihilation $\mu^+\mu^- \rightarrow \mu^+ \mu^-$ processes at future high energy muon colliders in the framework of the Randall-Sundrum-like model with…

High Energy Physics - Phenomenology · Physics 2024-02-06 S. C. İnan , A. V. Kisselev

An overview is given of the neutrino physics potential of future muon storage rings that use muon collider technology to produce, accelerate and store large currents of muons.

High Energy Physics - Experiment · Physics 2015-06-25 Bruce J. King

We study future lepton collider prospects for testing predictive models of leptophilic dark matter candidates with a thermal origin. We calculate experimental milestones for testing the parameter space compatible with freeze-out and the…

High Energy Physics - Phenomenology · Physics 2024-04-04 Cari Cesarotti , Gordan Krnjaic

European, Japanese, and US Neutrino Factory designs are presented. The main R&D issues and associated R&D programs, future prospects, and the additional issues that must be addressed to produce a viable Muon Collider design, are discussed.

High Energy Physics - Experiment · Physics 2010-01-05 Steve Geer

Measuring the shape of the Higgs boson potential is of paramount importance and will be a challenging task at current as well as future colliders. While the expectations for the measurement of the trilinear Higgs self-coupling are rather…

High Energy Physics - Phenomenology · Physics 2020-09-24 Mauro Chiesa , Fabio Maltoni , Luca Mantani , Barbara Mele , Fulvio Piccinini , Xiaoran Zhao

The future muon collider has the potential to discover feebly interacting particles in a wide range of masses above the electroweak scale. It is particularly suitable to search for heavy neutral leptons (HNLs), as their production cross…

High Energy Physics - Phenomenology · Physics 2024-01-18 Oleksii Mikulenko , Mariia Marinichenko

The physics potential of an intense source of low-energy muons is studied. Such a source is a necessary stage towards building the neutrino factories and muon colliders which are being considered at present. The CERN Neutrino Factory could…

High Energy Physics - Phenomenology · Physics 2007-05-23 J. Aysto , A. Baldini , A. Blondel , A. de Gouvea , J. Ellis , W. Fetscher , G. F. Giudice , K. Jungmann , S. Lola , V. Palladino , K. Tobe , A. Vacchi , A. van der Schaaf , K. Zuber

Since its discovery, the muon has proven to be an invaluable probe of the Standard Model (SM). Muons are readily available in tertiary beams in facilities around the world. They do not decay hadronically and have a lifetime of a few $\mu$…

High Energy Physics - Experiment · Physics 2025-02-04 Sophie Middleton

Energy-frontier accelerators provide powerful tools performing high precision measurements confirming the fundamental of the physics and broadening new research horizons. Such machines are either driven by circular or linear accelerators.…

Accelerator Physics · Physics 2022-01-26 I. V. Konoplev , S. A. Bogacz , Ya. Shashkov , M. A. Gusarova

We summarize the potential of muon colliders to probe fundamental physics. $W^+W^-$, \bar tt, and $Zh$ threshold measurements could determine masses to precisions $\Delta M_W = 6$ MeV, $\Delta m_t = 70$ MeV, and $\Delta m_h = 45$ MeV, to…

High Energy Physics - Phenomenology · Physics 2009-10-30 V. Barger , M. S. Berger , J. F. Gunion , T. Han

This White Paper brings together our previous studies on a Muon Collider (MC) and presents a design concept of the 6 TeV MC optics, the superconducting (SC) magnets, and a preliminary analysis of the protection system to reduce magnet…

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

We discuss the excellent prospects for a detailed study of a strongly interacting electroweak sector at a muon collider with c.m. energy $\rts\sim 4\tev$. For expected luminosity of $L=200-1000\fbi$ per year, $\mup\mum$ and $\mup\mup$ (or…

High Energy Physics - Phenomenology · Physics 2009-09-15 V. Barger , M. S. Berger , J. F. Gunion , T. Han
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