未来缪子对撞机探测器的有前景技术与研发方向
仪器与探测器
2022-03-15 v1 高能物理 - 实验
摘要
在后 LHC 一代粒子加速器中,缪子对撞机是一种独特的机器,能够提供极高能量的轻子对撞,并开辟一个广阔且大多未被探索的物理研究计划。然而在实验方面,如此巨大的物理潜力伴随着前所未有的技术挑战,因为缪子是不稳定粒子。其衰变产物与机器元件相互作用,产生强烈的背景粒子流,最终到达探测器并可能降低其性能。本文中,我们提出有潜力满足缪子对撞机探测器严苛指标的技术,并勾勒未来研发工作的前进路径。
引用
@article{arxiv.2203.07224,
title = {Promising Technologies and R&D Directions for the Future Muon Collider Detectors},
author = {Sergo Jindariani and Federico Meloni and Nadia Pastrone and Chiara Aimè and Nazar Bartosik and Emanuela Barzi and Alessandro Bertolin and Alessandro Braghieri and Laura Buonincontri and Simone Calzaferri and Massimo Casarsa and Maria Gabriella Catanesi and Alessandro Cerri and Grigorios Chachamis and Anna Colaleo and Camilla Curatolo and Giacomo Da Molin and Jean-Pierre Delahaye and Biagio Di Micco and Tommaso Dorigo and Filippo Errico and Davide Fiorina and Alessio Gianelle and Carlo Giraldin and John Hauptman and Tova Ray Holmes and Karol Krizka and Lawrence Lee and Kenneth Long and Donatella Lucchesi and Nikolai Mokhov and Alessandro Montella and Federico Nardi and Niko Neufeld and David Neuffer and Simone Pagan Griso and Antonello Pellecchia and Karolos Potamianos and Emilio Radicioni and Raffaella Radogna and Cristina Riccardi and Luciano Ristori and Lucio Rossi and Paola Salvini and Daniel Schulte and Lorenzo Sestini and Vladimir Shiltsev and Federica Maria Simone and Anna Stamerra and Xiaohu Sun and Jian Tang and Emily Anne Thompson and Ilaria Vai and Nicolo' Valle and Rosamaria Venditti and Piet Verwilligen and Paolo Vitulo and Hannsjorg Weber and Katsuya Yonehara and Angela Zaza and Davide Zuliani},
journal= {arXiv preprint arXiv:2203.07224},
year = {2022}
}
备注
Contribution to Snowmass 2021, 27 pages, 15 figures