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Related papers: Muon-Muon and other High Energy Colliders

200 papers

In this study, main parameters of Super proton-proton Collider (SppC) based lepton-proton colliders are estimated. For electron beam parameters, highest energy International Linear Collider (ILC) and Plasma Wake Field Accelerator-Linear…

Accelerator Physics · Physics 2017-04-24 A. C. Canbay , U. Kaya , B. Ketenoglu , B. B. Oner , S. Sultansoy

A high-energy $\mu^+\mu^-$ collider provides a wide variety of mechanisms for the production of new heavy particles. While the reach for such particles via the direct annihilation of $\mu^+\mu^-$ will approach the center-of-mass energy of…

High Energy Physics - Phenomenology · Physics 2025-03-03 Tao Han , Matthew Low , Tong Arthur Wu , Keping Xie

High energy muon colliders, such as the TeV-scale conceptual designs now being considered, are found to produce enough high energy neutrinos to constitute a potentially serious off-site radiation hazard in the neighbourhood of the…

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

Experimental activities involving multi-TeV muon collisions are a relatively recent endeavor. The community has limited experience in designing detectors for lepton interactions at center-of-mass energies of 10 TeV and beyond. This review…

High Energy Physics - Experiment · Physics 2024-10-08 Massimo Casarsa , Donatella Lucchesi , Lorenzo Sestini

A muon collider could produce the heavier Standard Model particles with a boost, for example in resonant processes such as $\mu^-\mu^+\to h$ or $\mu^-\mu^+\to Z$. We propose machine configurations that produce the boost (asymmetric beam…

High Energy Physics - Phenomenology · Physics 2023-09-27 Daniele Barducci , Alessandro Strumia

It is shown that at muon colliders with the energy in the region of 100 TeV the process of coherent pair creation by the muon in the field of the opposing beam becomes important and imposes some limitations on collider parameters.

High Energy Physics - Experiment · Physics 2009-10-31 Valery Telnov

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

As the planning stages for a high energy muon collider enter a more concrete era, an important question arises as to what new physics could be uncovered. A TeV-scale muon collider is also a vector boson fusion (VBF) factory with a very…

High Energy Physics - Phenomenology · Physics 2023-01-20 Tsz Hong Kwok , Lingfeng Li , Tao Liu , Ariel Rock

There are serious discussions for building a muon collider with $\mu^{+}\mu^{-}$ collisions at c.o.m. energies up to 4 TeV. We point out that the bileptonic gauge bosons predicted in some extensions of the Standard Model would be readily…

High Energy Physics - Phenomenology · Physics 2009-10-31 P. H. Frampton , X. Guan

The eventual prospect of muon colliders reaching several TeV encourages us to consider the experimental opportunities presented by very copious stores of muons, approaching $10^{21}$ per year. I summarize and comment upon some highlights of…

High Energy Physics - Phenomenology · Physics 2009-10-31 Chris Quigg

Construction of future electron-positron colliders (or dedicated electron linac) and muon colliders (or dedicated muon ring) tangential to Future Circular Collider (FCC) will give opportunity to utilize highest energy proton and nucleus…

Accelerator Physics · Physics 2018-03-14 Y. C. Acar , A. N. Akay , S. Beser , H. Karadeniz , U. Kaya , B. B. Oner , S. Sultansoy

We discuss the various beam dynamics problems in muon collider systems, starting from the proton accelerator needed to generate the muon beams and proceeding through the muon storage ring.

Future muon colliders will have remarkable capability for revealing and studying physics beyond the Standard Model. A first muon collider with variable c.m.\ energy in the range $\sqrt s = 100$ to 500~GeV provides unique opportunities for…

High Energy Physics - Phenomenology · Physics 2007-05-23 J. F. Gunion

We establish a simple yet general parameterization of Higgs-muon interactions within the effective field theory frameworks, including both the Higgs Effective Field Theory (HEFT) and the Standard Model Effective Field Theory (SMEFT). We…

High Energy Physics - Phenomenology · Physics 2024-12-25 Yang Ma , Eugenia Celada , Tao Han , Wolfgang Kilian , Nils Kreher , Fabio Maltoni , Davide Pagani , Jürgen Reuter , Tobias Striegl , Keping Xie

We study the physics potential of heavy QCD axions at high-energy muon colliders. Unlike typical axion-like particles, heavy QCD axions solve the strong CP problem with phenomenology driven by the anomalous gluon ($aG\widetilde G$)…

High Energy Physics - Phenomenology · Physics 2025-09-16 Ravneet Bedi , Tony Gherghetta , Soubhik Kumar , Peiran Li , Zhen Liu

The design of a future multi-TeV muon collider needs new ideas to overcome the technological challenges related to muon production, cooling, accumulation and acceleration. In this paper a layout of a positron driven muon source known as the…

We point out that both the specific lepton number content and the high energies potentially attainable with muon-muon colliders make it advisable to consider the technical feasibility of including an option of like-sign incoming beams in…

High Energy Physics - Phenomenology · Physics 2015-06-25 Frank Cuypers , Clemens A. Heusch

We discuss possible acceleration scenarios and methods for a mu+ mu- collider. The accelerator must take the beams from ~100 MeV to 2 TeV within the muon lifetime (2.2 x 10**(-6) E(mu)/m(mu) uS), while compressing bunches of 10**(12) muons…

Accelerator Physics · Physics 2008-11-26 D. Summers , D. Neuffer , Q. S. Shu , E. Willen

In the path towards a muon collider with center of mass energy of 10 TeV or more, a stage at 3 TeV emerges as an appealing option. Reviewing the physics potential of such muon collider is the main purpose of this document. In order to…

High Energy Physics - Phenomenology · Physics 2022-05-30 Jorge De Blas , Dario Buttazzo , Rodolfo Capdevilla , David Curtin , Roberto Franceschini , Fabio Maltoni , Patrick Meade , Federico Meloni , Shufang Su , Eleni Vryonidou , Andrea Wulzer , Chiara Aimè , Aram Apyan , Pouya Asadi , Mohammed Attia Mahmoud , Aleksandr Azatov , Nazar Bartosik , Alessandro Bertolin , Salvatore Bottaro , Laura Buonincontri , Massimo Casarsa , Luca Castelli , Maria Gabriella Catanesi , Francesco Giovanni Celiberto , Alessandro Cerri , Cari Cesarotti , Grigorios Chachamis , Siyu Chen , Yang-Ting Chien , Mauro Chiesa , Marco Costa , Giacomo Da Molin , Sridhara Dasu , Dmitri Denisov , Haluk Denizli , Radovan Dermisek , Luca Di Luzio , Biagio Di Micco , Keith Dienes , Tommaso Dorigo , Marco Fabbrichesi , Davide Fiorina , Matthew Forslund , Emidio Gabrielli , Francesco Garosi , Alfredo Glioti , Mario Greco , Admir Greljo , Ramona Groeber , Christophe Grojean , Jiayin Gu , Chengcheng Han , Tao Han , Keith Hermanek , Matthew Herndon , Tova Ray Holmes , Samuel Homiller , Guoyuan Huang , Sudip Jana , Sergo Jindariani , Yonatan Kahn , Wolfgang Kilian , Patrick Koppenburg , Nils Kreher , Karol Krizka , Gordan Krnjaic , Nilanjana Kumar , Lawrence Lee , Qiang Li , Zhen Liu , Kenneth Long , Ian Low , Qianshu Lu , Donatella Lucchesi , Lianliang Ma , Yang Ma , Luca Mantani , David Marzocca , Navin McGinnis , Barbara Mele , Claudia Merlassino , Alessandro Montella , Marco Nardecchia , Federico Nardi , Paolo Panci , Simone Pagan Griso , Giuliano Panico , Paride Paradisi , Nadia Pastrone , Fulvio Piccinini , Karolos Potamianos , Emilio Radicioni , Riccardo Rattazzi , Diego Redigolo , Laura Reina , Jürgen Reuter , Cristina Riccardi , Lorenzo Ricci , Luciano Ristori , Tania Natalie Robens , Werner Rodejohann , Richard Ruiz , Farinaldo S. Queiroz , Filippo Sala , Jakub Salko , Paola Salvini , Jose Santiago , Ivano Sarra , Daniel Schulte , Michele Selvaggi , Abdulkadir Senol , Lorenzo Sestini , Varun Sharma , Rosa Simoniello , Giordon Holtsberg Stark , Daniel Stolarski , Wei Su , Olcyr Sumensari , Xiaohu Sun , Tim M. P. Tait , Jian Tang , Andrea Tesi , Brooks Thomas , Emily Anne Thompson , Riccardo Torre , Sokratis Trifinopoulos , Ilaria Vai , Alessandro Valenti , Ludovico Vittorio , Liantao Wang , Yongcheng Wu , Keping Xie , Xiaoran Zhao , Jose Zurita

We discuss the design of the muon capture front end for a \mu+-\mu- Collider. In the front end, a proton bunch on a target creates secondary pions that drift into a capture transport channel, decaying into muons. A sequence of rf cavities…

Accelerator Physics · Physics 2012-02-27 D. Neuffer , C. Yoshikawa