Accès ouvert déclaré
2025
article
A Linear Collider Vision for the Future of Particle Physics
H Abramowicz, E. Adli, F. Alharthi, M. Almanza-Soto, M. M. Altakach, W. Altmannshofer, S. Ampudia Castelazo, D. Angal-Kalinin, J. A. Anguiano, R. B. Appleby, O. Apsimon, A. Arbey, F. Arco, O. Arquero, A. Aryshev, S. Asai, D. Attie, J L Ávila-Jiménez, H. Baer, J. A. Bagger, Y. Bai, I. R. Bailey, C. Balazs, P. Bambade, T. Barklow, J. Baudot, P. Bechtle, T. Behnke, A. B. Bellerive, S. Belomestnykh, Y. Benhammou, J. Berenguer-Antequera, M. Berger, M. Berggren, M. Bertucci, M. Besancon, D. Bett, P.-C. Bhat, T. Biekoetter, S. Bilanishvili, B. Bilki, B. Bilki, J. Bjorklund Svensson, V. M. Bjelland, C. Blanch, B. Bliewert, M. Boehler, S. Boogert, M. Boronat, V. Boudry, D. Bourilkov, I. Bozovic, J. Braathen, J. E. Brau, C. Breuning, J.-C. Brient, I. Brock, B. Brudnowski, K. Buesser, E. Bulyak, P. N. Burrows, G. Burt, O. Cakir, A. Caldwell, A C Canbay, F. G. Celiberto, E. Cenni, I. Chaikovska, R. Chehab, G. Chen, J. B. B. Chen, T. Chikamatsu, V. Cilento, P. Colas, M. Coman, L. Corner, F. Cornet, F. Cornet-Gomez, F. Corriveau, R. Corsini, J. Cvach, R. D'Arcy, C. Damerell, A Das, S. Dasu, J. de Blas, E. Del Core, M. Demarteau, H. Denizli, R. Dermisek, A. Dhar, S. Dittmaier, F. Djurabekova, E. M. Donegani, A. Doyle, P. Drobniak, T. A. du Pree, B. Dudar, H. Duran Yildiz, G. Durieux, J. Dutta, S. Easo, G. Eckerlin, U. Einhaus, C. Emma, E Esarey, D. Esperante, D. Espriu, L. R Evans, J. Farmer, A. Faus Golfe, M. Fernandez, J. C. Fernandez-Ortega, M. Formela, A. Formenti, L. J. Forrester, B Foster, N. Fourches, M. C. Fouz, Freitas AV, C. D. Fu, K. Fujii, J. Fujimoto, B. Fuks, J. Fuster, N. Fuster-Martinez, M Gabelmann, F. Gaede, M. Galletti, E. Gallo, S. Ganjour, M. V. Garzelli, R. L. Geng, S Gessner, I. D. Gialamas, B. Gimeno, J. Goldstein, M. Goncerz, A. J. Gonsalves, F F C González, D. González-Iglesias, S. Gori, J. M. Grames, P. Grannis, L. Gray, G. Grenier, H. Guler, HE Haber, K. Hamaguchi, N. Hamann, O. Hartbrich, N. M. Hartman, G. Huetsi, S. Heinemeyer, G. Heinrich, C. Hensel, K. Hidaka, S. Hirose, A.H. Hoang, M. J. Hogan, W. Hollik, Y. Horii, R. Hosokawa, Sicong Huang, D. Hynds, M. I. Idzik, S. Iguro, Y. Iiyama, Αλέξανδρος Καράμ, A. Irles, A. Ishikawa, M. Ishino, I. P. Ivanov, Y. Iwashita, M. Jacewicz, Jaramillo RA, D. Jeans, C. Jing, R. M Jones, W. Kaabi, M. Kagan, J. Kalinowski, D. K Kalvik, J. Kaminski, S. Kanemura, K. Kannike, A. Karam, Y. Kato, K. Kawagoe, D. Kaefer, L. Kennedy, J. Kersten, S. A. Khan, V. A. Khoze, W. Kilian, J. Klamka, P. Kluit, K. Kong, P. Koppenburg, A. Korsun, A. V. Kotwal, S. Kraml, K. Krueger, K. Kubo, T. Kubo, M. Kucharczyk, S. Kuday, A. Kumar, N. Kumar, M. Kurata, Y. Kurihara, M. Kuriki, J Kvasnicka, K. Kyoya, I Laktineh, A. Latina, F. LeDiberder, A. Levy, M. Liepe, C. A. Lindstroem, J. List, B. List, M Litos, V. N. Litvinenko, A. Lopez-Virto, X. Lu, T. Luo, M. Lupberger, B. Madison, T. Madlener, J. Maeda, F. Mahmoudi, E. Maina, N. Majernik, R. Margraf-O'Neal, T. W. Markiewicz, P. Martín-Luna, A. Martens, V. J. Martin, L. Marzola, V. I. Maslov, K. T. Matchev, S. Matsumoto, K. Mawatari, J. P. Márquez, M.M. Muehlleitner, A. McIlvenny, PA McIntosh, K. Mekala, D. Melini, F. Meloni, A. Menandez, S. Michizono, K. Mimasu, V. Miralles, W. Mitaroff, V. A. Mitsou, L. Monaco, G. Moortgat-Pick, M. Moreno-Llcer, T. Mori, J. M. Moron, S. Morton, D. Moya, M. Mulder, P. Munbodh, H. Murayama, E. Musumeci, V. V. Mytrochenko, N. Nagata, E. Nagy, T. Nakada, J. Nakajima, Nakamura K, E. A. Nanni, E. Nardi, S. Narita, M. T. Núñez Pardo de Vera, M. Nojiri, D. Ntounis, A. Ody, O. M. Ogreid, T. Ohl, Y. Okada, C. Oleari, M. Olvegård, M. Omet, T. Omori, Y. Onel, H. Ono, W. Ootani, C. Orero, J. Osborne, K. Osterberg, J Osterhoff, M. Ouchemhou, Q. Ouyang, S. Pagan Griso, R. Paparella, S. C. Park, J. Pata, J. R. Patterson, R. Poeschl, F. Pena, L. K Pedraza-Motavita, M. E. Peskin, F. Pilat, P. Piot, S. Plaetzer, I. Polak, W. Porod, K. Potamianos, C. T. Potter, P. Poulose, J. G. Power, D. Protopopescu, H. R. Qi, J. Rabara Bailey, A. Racioppi, M. Raidal, J. P. Ralston, A. Rastogi, L. Reichenbach, L. Reichwein, L REINA, J. Reuter, F Hanna Richard, S. Riemann, R. A. Rimmer, T. Robens, a J Robson, G. Rodrigo, C Rogan, J. Rojo, M. Q. Ruan, S. Rudrabhatla, A. Ruiz Jimeno, T. Saeki, H. Sakai, Y. Sakaki, F Salvatore, T. Sanuki, S. Sasikumar, T Schoerner, A. Scheinker, C. B. Schroeder, S. Schroeder, I. Schulthess, M Schumacher, A. Schwartzman, Y. Seiya, A. Senol, H. Sert, D. Sertore, A. Seryi, T. Shidara, K. Sjobak, I. Smiljanic, S. Spannagel, M. Spira, M. Stanitzki, S. Stapnes, D Storey, J. Strube, S . Su, A. Subba, T. Suehara, H. Sugawara, K. Sugizaki, Z. Sun, R. Szafron, T. Takahashi, T. Takeshita, T. Tauchi, G. Taylor, N. Terunuma, D. Terzani, T. Teubner, J. Tian, J. Timmermans, M. Titov, R. Tomás García, T. Tong, J. M. Torndal, M. Trautwein, A. Tricoli, K. Tsumura, B. Tuchming, D. Tuckler, I. Turk Cakir, M. Tytgat, A. Ukleja, C. Vallee, R. Van Kooten, J. van Tilborg, A. Vauth, M. Vellasco, C. Vernieri, L. Verra, M Tala Pinto, I. Vidakovic, H. Videau, E. Viklund, I. Vila, M. Villaplana, M Vos, N. Vukasinovic, N. Walker, K. Wandall-Christensen, Y. Wang, B. F. L. Ward, Z. Was, T. Watanabe, N. K. Watson, G. Weiglein, J. D. Wells, H. Wennloef, M. Wenskat, S. Westhoff, J. W. Wetzel, A White, P. H. Williams, M. Williams, G. W. Wilson, M. Wing, M. Winter, A. Winter, T. Wojton, J. C. Wood, W. Wuensch, X. Xia, K. Yagyu, K. Yamamoto, Y. Yamamoto, H. Yamamoto, A. Yamamoto, S. Yamashita, M. Yamauchi, K. Yokoya, M. Yoshioka, J. Zalesak, A. F. Zarnecki, K. Zembaczynski, D. Zerwas, J. Zhang, Y. Zhang, W. Zhang, Y.-M. Zhong, M. Zielinski, M. Zobov
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25Pays d’affiliation déclarés
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Le résumé fourni par la source
In this paper we review the physics opportunities at linear $e^+e^-$ colliders with a special focus on high centre-of-mass energies and beam polarisation, take a fresh look at the various accelerator technologies available or under development and, for the first time, discuss how a facility first equipped with a technology mature today could be upgraded with technologies of tomorrow to reach much higher energies and/or luminosities. In addition, we will discuss detectors and alternative collider modes, as well as opportunities for beyond-collider experiments and R&D facilities as part of a linear collider facility (LCF). The material of this paper will support all plans for $e^+e^-$ linear colliders and additional opportunities they offer, independently of technology choice or proposed site, as well as R&D for advanced accelerator technologies. This joint perspective on the physics goals, early technologies and upgrade strategies has been developed by the LCVision team based on an initial discussion at LCWS2024 in Tokyo and a follow-up at the LCVision Community Event at CERN in January 2025. It heavily builds on decades of achievements of the global linear collider community, in particular in the context of CLIC and ILC.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Les sujets associés
Particle Detector Development and PerformanceParticle Accelerators and Free-Electron LasersSuperconducting Materials and Applications