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We update our Standard Model predictions for g-2 of the muon and for the hadronic contributions to the running of the QED coupling, Delta alpha^5_had(M_Z^2). Particular emphasis is put on recent changes in the hadronic contributions from…

High Energy Physics - Phenomenology · Physics 2015-05-18 T. Teubner , K. Hagiwara , R. Liao , A. D. Martin , Daisuke Nomura

The MUonE experiment has been proposed to measure the differential cross section of $\mu e$ elastic scattering, by colliding the 160 GeV muons of the CERN M2 beam with atomic electrons of thin target plates. From a very precise measurement…

Instrumentation and Detectors · Physics 2024-04-26 Giovanni Abbiendi

This document is being submitted to the 2024-2026 European Strategy for Particle Physics Update (ESPPU) process on behalf of the US Muon Collider community, with its preparation coordinated by the interim US Muon Collider Coordination…

High Energy Physics - Experiment · Physics 2025-04-17 A. Abdelhamid , D. Acosta , P. Affleck , G. Agarwal , K. Agashe , P. Agrawal , R. Alharthy , B. Allmond , D. Ally , G. Ambrosio , O. Amram , A. Apresyan , A. Apyan , C. Aruta , C. Arzate , P. Asadi , J. Ashley , A. Avasthi , J. Backus , R. Bartek , A. Batz , L. Bauerdick , C. Bell , S. Belomestnykh , J. S. Berg , D. Berry , J. Berryhill , S. Bhattacharya , I. Bigaran , V. di Benedetto , O. Bitter , K. Black , K. Bloom , S. A. Bogacz , J. Bonilla , T. Bose , D. Bourilkov , G. Brooijmans , E. Brost , S. Braun , D. Brown , M. Buen-Abad , J. Butler , C. Campagnari , M. Campana , A. Canepa , R. Capdevilla , K. Capobianco-Hogan , C. Cesarotti , Z. Chacko , P. Chang , S. Chang , S. Chekanov , Y. Chien , W. H. Chiu , W. Chung , R. Clark , S. Cousineau , C. Cox , M. Cremonesi , C. Csaki , G. Cummings , D. Curtin , S. D. Bakshi , A. Datta , H. de la Torre Perez , S. Demers , D. Denisov , R. Dermisek , J. Dervan , A. Dhar , D. Diaz , M. Dittrich , T. Du , J. Duarte , I. Dutta , J. Dutta , B. Echenard , J. Eldred , P. Elmer , G. Eremeev , N. Evans , P. Everaerts , J. Fan , S. Ferrante , S. Ferraro , T. Figy , M. Forslund , P. Fox , M. Franklin , K. Fraser , A. Freitas , A. Gandrakota , A. Gaponenko , M. Garcia-Sciveres , R. Garg , C. Geddes , S. Gessner , E. Gianfelice , A. S. Giannakopoulou , S. Gleyzer , A. de Gouvea , H. Gray , D. Green , L. Grossman , Y. Grossman , D. Guerrero , T. Han , S. Hedges , T. Heim , M. Herndon , G. Herrera , C. Herwig , J. Hirschauer , S. Homiller , A. Hook , A. Hoover , W. Hopkins , M. Hostert , J. Howard , J. Hoya , P. Huber , R. Husain , M. Hussain , B. Jayatilaka , L. Jeanty , D. Jenkins , D. Jiang , I. Juarez-Reyes , G. Kane , K. Kelly , K. Kennedy , C. Kianian , D. Kim , D. Kim , M. Kolosova , K. Kong , J. Konigsberg , S. Koren , A. Korytov , A. V. Kotwal , G. K. Krintiras , K. H. M. Kwok , S. Lammers , D. Lange , D. Larson , M. Larson , J. Lawless , C. Lee , L. Lee , L. Le Pottier , I. Lewis , H. Li , L. Li , P. Li , M. Liepe , G. Lima , M. Littmann , M. Liu , Z. Liu , A. Loeliger , V. Lombardo , S. Lomte , M. Low , X. Lu , T. Luo , N. Luongo , P. Machado , C. Madrid , S. Malik , A. Mallampalli , N. Manganelli , G. Marques-Tavares , Z. Marshall , V. I. Martinez Outschoorn , K. Matchev , A. Mazzacane , N. McGinnis , C. McLean , D. Merenich , J. Metcalfe , E. Mettner , C. Mills , D. Minic , M. Mironova , R. Mishra , C. Mitchell , A. Mohammadi , V. Morozov , H. Murayama , S. Nahn , E. Nanni , A. Narayanan , C. Nee , M. Neubauer , D. Neuffer , C. Ng , D. Noonan , Y. Nosochkov , A. Novak , J. Offermann , I. Ojalvo , Y. Oksuzian , T. Oli , T. Orimoto , M. Othman , K. Panchal , V. Papadimitriou , A. Parikh , K. Pedro , F. Pellemoine , C. Pena , G. Penn , M. Perelstein , M. Peskin , A. Petrov , G. Piacquadio , M. Pleier , S. Posen , R. Powers , S. Prestemon , M. Purohit , T. Raubenheimer , J. Qiang , L. Rainbolt , C. Rasmussen , A. Rastogi , M. Reece , I. Reed , L. Reina , L. Ricci , C. Riggall , R. Rimmer , B. Roberts , B. Rosser , S. Roy , L. Rozanov , R. Ruber , B. S Acharya , T. Sabitsch , M. Safdari , A. Safonov , D. Saltzberg , D. Sathyan , H. Schellman , C. Scherb , R. Schmitz , S. Seidel , E. Sexton-Kennedy , V. Sharma , V. Shiltsev , M. Shochet , I. Shoemaker , R. Simeon , B. Simons , E. Sledge , E. Smith , P. Snopok , S. Snyder , S. Spanier , G. Stancari , G. Stark , N. Strobbe , S. Stucci , J. Stupak , R. Sundrum , C. Thompson , E. Thompson , C. Thoreson , Y. Torun , C. Tosciri , N. Tran , A. Tricoli , C. Tully , A. Tuna , I. Valenzuela Lombera , K. Van Tilburg , J. Vay , W. Vetens , C. Vuosalo , C. E. M. Wagner , B. Wang , C. Wang , L. Wang , Z. Wang , J. Watts , H. Weber , M. Williams , H. Witte , J. Womersley , D. Wood , Y. Wu , K. Xie , S. Xie , W. L. Xu , A. Yagil , K. Yonehara , B. Yu , T. Yu , R. L. Zamora Peinado , G. Zecchinelli , J. Zhang , Y. Zhong , I. Zoi , J. Zupan

After summarizing the important commonalities between neutrino factories and muon colliders, the key differences are discussed. These include a much larger needed cooling factor (~10^6 in six-dimensional emittance), a smaller number of muon…

Accelerator Physics · Physics 2015-05-27 Daniel M. Kaplan

The CMS muon system is undergoing substantial upgrades to meet the challenges of the High-Luminosity LHC (HL-LHC), including the installation of the new Muon Endcap 0 (ME0) detector. Large-scale production started in 2024. ME0 is a…

Instrumentation and Detectors · Physics 2026-03-05 Anureet Kaur

Accurate measurements of particles masses, couplings and widths are possible by measuring production cross sections near threshold. We discuss the prospects for performing such measurements at a high luminosity muon collider.

High Energy Physics - Phenomenology · Physics 2009-10-31 M. S. Berger

Muon colliders offer special opportunities to discover and study new physics. With the high intensity source of muons at the front end, orders of magnitude improvements would be realized in searches for rare muon processes, in deep…

High Energy Physics - Phenomenology · Physics 2009-10-31 V. Barger

The Compact Muon Solenoid experiment at the Large Hadron Collider at CERN includes a silicon pixel detector as its innermost component. Its main task is the precise reconstruction of charged particles close to the primary interaction…

A muon collider is expected to produce a high intensity neutrino beam which is an admixture of either $\nu_{\mu}+\bar{\nu_e}$ or $\bar{\nu}_{\mu} +\nu_e$ which can can be directed to underground detectors far away from the source. It will…

High Energy Physics - Phenomenology · Physics 2011-07-19 R. N. Mohapatra

Muon colliders offer the possibility to go to very high energies with relatively small circular colliders, energies up to 10 or 14 TeV are envisioned. Due to their very clean collider environment they provide a fantastic tool to search for…

High Energy Physics - Phenomenology · Physics 2023-05-23 Jürgen Reuter

A new experimental area designed to develop, test and verify muon ionization cooling apparatus using the 400-MeV Fermilab Linac proton beam has been fully installed and is presently being commissioned. Initially, this area was used for…

Muon beams of low emittance provide the basis for the intense, well characterised neutrino beams of a neutrino factory and for multi-TeV lepton-antilepton collisions at a muon collider. The international Muon Ionization Cooling Experiment…

Accelerator Physics · Physics 2018-05-21 Paolo Franchini

As part of the Compact Muon Solenoid experiment Phase-II upgrade program, new Resistive Plate Chambers will be installed in the forward region. High background conditions are expected in this region during the high-luminosity phase of the…

Instrumentation and Detectors · Physics 2020-06-02 Sabino Meola

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

We discuss prospects of deep inelastic scattering physics capabilities at the future muon collider facility. In addition to mu^+ mu^- collider itself, the facility provides other possibilities. Among the possibilities, we present…

High Energy Physics - Experiment · Physics 2007-05-23 J. Yu

The ALICE Collaboration is planning to construct a new detector (ALICE 3) aiming at exploiting the potential of the high-luminosity Large Hadron Collider (LHC). The new detector will allow ALICE to participate in LHC Run 5 scheduled from…

Quality assurance and condition assessment of concrete structures is an important topic world-wide due to the ageing infrastructure and increasing traffic demands. Common topics include, but are not limited to, localisation of rebar or…

We summarize our recent results for the (T,mu)-phase diagram of N_f=3 QCD. Finding a strong variation of the critical endpoint mu_c with the quark mass m, we point out that an endpoint within reach of experiment requires fine-tuned quark…

High Energy Physics - Lattice · Physics 2017-08-23 O. Philipsen , Ph. de Forcrand

Muon updates weight matrices along (approximate) polar factors of the gradients and has shown strong empirical performance in large-scale training. Existing attempts at explaining its performance largely focus on single-step comparisons (on…

Optimization and Control · Mathematics 2026-02-13 Antoine Gonon , Andreea-Alexandra Muşat , Nicolas Boumal

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