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The physics case of a 3 TeV muon collider stage

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,Laura Buonincontri,Massimo Casarsa,Maria Gabriella Catanesi,Alessandro Cerri,Cari Cesarotti,Grigorios Chachamis,Siyu Chen,Yang-Ting Chien,Marco Costa,Giacomo Da Molin,Sridhara Dasu,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,Lawrence Lee,Qiang Li,Zhen Liu,Kenneth Long,Ian Low,Qianshu Lu,Donatella Lucchesi,Yang Ma,Luca Mantani,David Marzocca,Navin McGinnis,Barbara Mele,Claudia Merlassino,Alessandro Montella,Federico Nardi,Paolo Panci,Simone Pagan Griso,Giuliano Panico,Paride Paradisi,Nadia Pastrone,Fulvio Piccinini,Karolos Potamianos,Emilio Radicioni,Diego Redigolo,Laura Reina,Jürgen Reuter,Cristina Riccardi,Lorenzo Ricci,Luciano Ristori,Werner Rodejohann,Filippo Sala,Jakub Salko,Paola Salvini,Jose Santiago,Daniel Schulte,Michele Selvaggi,Abdulkadir Senol,Lorenzo Sestini,Varun Sharma,Rosa Simoniello,Giordon Holtsberg Stark,Daniel Stolarski,Xiaohu Sun,Tim M. P. Tait,Jian Tang,Brooks Thomas,Emily Anne Thompson,Riccardo Torre,Sokratis Trifinopoulos,Ilaria Vai,Ludovico Vittorio,Yongcheng Wu,Keping Xie,Xiaoran Zhao,Jose Zurita

HAL (Le Centre pour la Communication Scientifique Directe)(2022)

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Abstract
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 outline the progression of the physics performances across the stages, a few sensitivity projections for higher energy are also presented. There are many opportunities for probing new physics at a 3 TeV muon collider. Some of them are in common with the extensively documented physics case of the CLIC 3 TeV energy stage, and include measuring the Higgs trilinear coupling and testing the possible composite nature of the Higgs boson and of the top quark at the 20 TeV scale. Other opportunities are unique of a 3 TeV muon collider, and stem from the fact that muons are collided rather than electrons. This is exemplified by studying the potential to explore the microscopic origin of the current $g$-2 and $B$-physics anomalies, which are both related with muons.
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tev muon,physics case,stage
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