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Muon detection in electron-positron annihilation for muon collider studies

The investigation of the energy frontier in physics requires novel concepts for future colliders. The idea of a muon collider is very appealing since it would allow to study particle collisions at up to tens of TeV energy, while offering a cleaner experimental environment with respect to hadronic co...

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Detalles Bibliográficos
Autores principales: Amapane, N., Antonelli, M., Anulli, F., Ballerini, G., Bandiera, L., Bartosik, N., Bauce, M., Bertolin, A., Biino, C., Blanco-Garcia, O.R., Boscolo, M., Brizzolari, C., Cappati, A., Casaburo, F., Casarsa, M., Cavoto, G., Cesarini, G., Collamati, F., Cotto, G., Curatolo, C., Di Nardo, R., Gonella, F., Hoh, S., Iafrati, M., Iacoangeli, F., Kiani, B., Li Voti, R., Lucchesi, D., Mascagna, V., Paccagnella, A., Pastrone, N., Pazzini, J., Pelliccioni, M., Ponzio, B., Prest, M., Ricci, M., Rosati, S., Rossin, R., Rotondo, M., Planell, O. Sans, Sestini, L., Soldani, M., Triossi, A., Vallazza, E., Ventura, S., Zanetti, M.
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.15161/oar.it/73975
https://dx.doi.org/10.1016/j.nima.2021.166129
http://cds.cern.ch/record/2770530
Descripción
Sumario:The investigation of the energy frontier in physics requires novel concepts for future colliders. The idea of a muon collider is very appealing since it would allow to study particle collisions at up to tens of TeV energy, while offering a cleaner experimental environment with respect to hadronic colliders. One key element in the muon collider design is the low-emittance muon production. Recently, the Low EMittance Muon Accelerator (LEMMA) collaboration has explored the muon pair production close to its kinematic threshold by annihilating 45 GeV positrons with electrons in a low <math display="inline" id="d1e1705" altimg="si27.svg"><mi>Z</mi></math> material target. In this configuration, muons are emerging from the target with a naturally low-emittance. In this paper we describe the performance of a system, to study this production mechanism, that consists in several segmented absorbers with alternating active layers composed of fast Cherenkov detectors together with a muon identification technique based on this detector. Passive layers were made of tungsten. We collected data corresponding to muon and electron beams produced at the H2 line in the North Area of the European Organization for Nuclear Research (CERN) in September 2018.