Accès ouvert déclaré
2025
preprint
Design Initiative for a 10 TeV pCM Wakefield Collider
Spencer Gessner, Almantas Galvanauskas, J. Grames, Rachel Margraf, L. Verra, K. Cassou, E. Adli, B. Foster, J. P. Palastro, М. Chung, Mikhail Polyanskiy, Igor Pogorelsky, Gongxiaohui Chen, G. Sarri, B. Beaudoin, F. Willeke, David Bruhwiler, Joseph Grames, Yuan Shi, Douglas Storey, Maksim Kravchenko, Daniel Kalvik, Ivan Rajković, Jean-Luc Vay, Tong Zhou, J. van Tilborg, M. Galletti, A. Di Piazza, Chaojie Zhang, Yiheng Ye, S. S. Bulanov, Pratik Manwani, L. Corner, Allen Caldwell, Qianqian Su, G. Andonian, Kei Nakamura, Jonathan Wood, Anthony Vazquez, Davide Terzani, Sarah Schroeder, Arianna Formenti, Ulascan Sarica, Thamine Dalichaouch, P. Muggli, A. Cianchi, J. Vieira, F. Filippi, Dillon Merenich, Mariastefania De Vido, M. Ferrario, Robert Ariniello, Weishuang Linda Xu, G. Costa, Jian Bin Ben Chen, L. Kennedy, Kevin Langhoff, O. G. Finnerud, L. Boulton, Dimitris Ntounis, Ankur Dhar, A. Biagioni, Kyoungchul Kong, R. Pöschl, Gwanghui Ha, Samuel Homiller, John Farmer, Csaba Balázs, Jie Gao, Emilio A. Nanni, G. Wilson, Rogelio Tomás, Johannes Bluemlein, Angeles Faus Golfe, D. Zerwas, Jan Kalinowski, Jonas Björklund Svensson, I. Božović, Mohammad Mahdi Altakach, Marco Garten, Francesco Giovanni Celiberto, P. Karataev, P. Koppenburg, M. Wing, E. Granados, Tom Tong, Ivo Schulthess, M. E. Biagini, Hossein Saberi, Guoxing Xia, Lars Reichwein, Kyrre Sjobak, Andrea Rossi, S. Doebert, A. Sublet, S. Norman, Navid Vafaei-Najafabadi, A. Pardons, P. D. Grannis, D. He, K. Hidaka, A. Pukhov, Eugene Bulyak, Naveen Pathak, William Li, Pouya Asadi, A. J. Gonsalves, Eir Eline Hørlyk, Fanting Kong, Lance Labun, Mahek Logantha, M. Bergamaschi, M. Demarteau, M. Berggren, Eleni Vryonidou, P. Piot, Katherine Fraser, Siddharth Karkare, B. Cros, Armando Felicio Zuffi, N. Lopes, J. E. Shrock, T. Raubenheimer, M. Turner, K. J. C. Leney, David Cooke, Lesley M. Forrester, Thandikire Madula, A. Giribono, Ou Z. Labun, S. Corde, Remi Lehé, N. González, Max Varverakis, M. Fuchs, Maxence Thévenet, Santiago Pérez, Simon Knapen, A. McIlvenny, Valentina Lee, Claire Hansel, Severin Diederichs, Alexander Scheinker, Rafi Hessami
2Citations signalées — pas une note de qualité
19Institutions déclarées
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Résumé fourni par la source
This document outlines a community-driven Design Study for a 10 TeV pCM Wakefield Accelerator Collider. The 2020 ESPP Report emphasized the need for Advanced Accelerator R&D, and the 2023 P5 Report calls for the ``delivery of an end-to-end design concept, including cost scales, with self-consistent parameters throughout.' This Design Study leverages recent experimental and theoretical progress resulting from a global R&D program in order to deliver a unified, 10 TeV Wakefield Collider concept. Wakefield Accelerators provide ultra-high accelerating gradients which enables an upgrade path that will extend the reach of Linear Colliders beyond the electroweak scale. Here, we describe the organization of the Design Study including timeline and deliverables, and we detail the requirements and challenges on the path to a 10 TeV Wakefield Collider.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Sujets associés
Particle Detector Development and PerformanceRadiation Detection and Scintillator TechnologiesParticle Accelerators and Free-Electron Lasers