Accès ouvert déclaré
2020
preprint
SND@LHC
SHiP Collaboration, C. Ahdida, A. Akmete, R. Albanese, A. Alexandrov, M. Andreini, A. Anokhina, S. Aoki, G. Arduini, E. Atkin, N. Azorskiy, A. Bagulya, F. Baaltasar dos Santos, A. Baranov, F. Bardou, G. J. Barker, M. Battistin, J. Bauche, A. Bay, V. Bayliss, G. Bencivenni, A. Berdnikov, Y. Berdnikov, M. Bertani, P. Bestmann, C. Betancourt, I. Bezshyiko, O. Bezshyyko, D. Bick, S. Bieschke, A. Blanco, J. Boehm, M. Bogomilov, I. Boiarska, K. Bondarenko, W. Bonivento, J. Borburgh, Alexey Boyarsky, R. Brenner, D. Breton, Luca Rosario Buonocore, V. Büscher, A. Buonaura, S. Buontempo, S. Cadeddu, A. Calcaterra, M. Calviani, M. Campanelli, V. Canale, M. Casolino, F. Cerutti, N. Charitonidis, P. Chau, J. Chauveau, A. Chepurnov, M. Chernyavskiy, Ki Hong Choi, А. Г. Чумаков, P. Ciambrone, V. Cicero, L. Congedo, K. Cornelis, M. Cristinziani, A. Crupano, G. M. Dallavalle, A. Datwyler, N. D'Ambrosio, G. D'Appollonio, R. de Asmundis, P. T. De Bryas Dexmiers D'Archiac, J. de Carvalho Saraiva, G. De Lellis, Matteo Magistris, A. De Roeck, M. De Serio, D. De Simone, L. Dedenko, Pavel Dergachev, A. Di Crescenzo, L. Di Giulio, N. Di Marco, Claudio Dib, H. Dijkstra, В. В. Дмитренко, S. Dmitrievskiy, L. A. Dougherty, A. Dolmatov, D. Domenici, S. Donskov, V. Drohan, A. Dubreuil, O. Durhan, M. Ehlert, E. Elikkaya, T. Enik, A. Etenko, F. Fabbri, O. Fedin, F. Fedotovs, G. Felici, M. Ferrillo, M. Ferro-Luzzi, K. Filippov, R. A. Fini, P. Fonte, C. Franco, M. Fraser, R. Fresa, R. Froeschl, T. Fukuda, G. Galati, J. Gall, L. Gatignon, G. Gavrilov, V. Gentile, B. Goddard, L. Golinka-Bezshyyko, A. Golovatiuk, D. Golubkov, A. Golutvin, P. Gorbounov, D. Gorbunov, С. Горбунов, V. Gorkavenko, M. Gorshenkov, V. Grachev, A. L. Grandchamp, E. Graverini, J. -L. Grenard, D. Grenier, V. Grichine, N. Gruzinskii, A. M. Guler, Yu. Guz, G. J. Haefeli, C. Hagner, H. Hakobyan, I. W. Harris, E. van Herwijnen, C. Hessler, A. Hollnagel, B. Hosseini, M. Hushchyn, G. Iaselli, P. Iengo, A. Iuliano, R. Jacobsson, D. Joković, M. Jonker, І. Каденко, V. Kain, B. Kaiser, C. Kamiscioglu, D. Karpenkov, K. Kershaw, M. Khabibullin, E. Khalikov, G. Khaustov, G. Khoriauli, A. Khotyantsev, Y. G. Kim, V. Kim, N. Kitagawa, J. -W. Ko, K. Kodama, A. Kolesnikov, D. Kolev, V. Kolosov, M. Komatsu, A. Kono, N. S. Konovalova, S. Kormannshaus, I. Korol, I. Korol'ko, A. Korzenev, V. Kostyukhin, E. Koukovini Platia, S. Kovalenko, I. Krasilnikova, Y. Kudenko, E. Kurbatov, P. Kurbatov, V. Kurochka, E. Kuznetsova, H. M. Lacker, M. Lamont, G. Lanfranchi, O. Lantwin, A. Lauria, K. S. Lee, K. Y. Lee, J. -M. Lévy, V. P. Loschiavo, L. Lopes, E. Lopez Sola, Valery E. Lyubovitskij, J. Maalmi, A. Magnan, V. Maleev, A. Malinin, Y. Manabe, A.K. Managadze, M. Manfredi, Shaun Marsh, A. M. Marshall, A. Mefodev, P. Mermod, A. Miano, S. Mikado, Yu. Mikhaylov, D. A. Milstead, O. Mineev, A. Montanari, M. C. Montesi, K. Morishima, S. Movchan, Y. Muttoni, N. Naganawa, S. Nasybulin, P. Ninin, A. Nishio, Alexander Novikov, B. Obinyakov, S. Ogawa, N. Okateva, B. Opitz, J. Osborne, M. Ovchynnikov, N. Owtscharenko, P. H. Owen, P. Pacholek, A. Paoloni, B. D. Park, G. Passeggio, A. Pastore, M. Patel, D. Pereyma, A. Perillo-Marcone, G. L. Petkov, K. Petridis, A. Petrov, D. Podgrudkov, V. Poliakov, N. Polukhina, J. Prieto Prieto, M. Prokudin, A. Prota, A. Quercia, A. Rademakers, A. Rakai, F. Ratnikov, T. Rawlings, F. Redi, S. Ricciardi, M. Rinaldesi, Volodymyr Rodin, V. Rodin, P. Robbe, A.B. Rodrigues Cavalcante, T. Roganova, H. Rokujo, G. Rosa, T. Rovelli, Oleg Ruchayskiy, T. Ruf, M. Sabaté-Gilarte, V. Samoylenko, V. Samsonov, F. Sánchez Galán, P. Santos Diaz, A. Sanz Ull, A. Saputi, E. S. Savchenko, J. S. Schliwinski, W. Schmidt-Parzefall, O. Schneider, G. Sekhniaidze, N. Serra, S. Sgobba, O. Shadura, A. Shakin, Mikhail Shaposhnikov, P. Shatalov, T. Shchedrina, L. Shchutska, V. Shevchenko, H. Shibuya, L. Shihora, S. Shirobokov, A. E. Shustov, S. B. Silverstein, S. Simone, R. Simoniello, M. Skorokhvatov, S. Yu. Smirnov, J. Y. Sohn, A. Sokolenko, E. Solodko, N. Starkov, L. Stoel, M. E. Stramaglia, D. Strekalina, D. Sukhonos, Y. Suzuki, S. Takahashi, J. L. Tastet, P. Teterin, S. Than Naing, I. Timiryasov, V. Tioukov, D. Tommasini, M. Torii, N. Tosi, F. Tramontano, D. Treille, R. Tsenov, С. Е. Улин, E. Ursov, A. Ustyuzhanin, З. М. Утешев, G. Vankova-Kirilova, F. Vannucci, C. Vendeuvre, V. Venturi, S. Vilchinski, Heinz Vincke, Helmut Vincke, C. Visone, K. Vlasik, A. Volkov, R. Voronkov, S. van Waasen, R. Wanke, P. Wertelaers, O. Williams, J. -K. Woo, M. Wurm, S. Xella, D. Yilmaz, A. U. Yilmazer, C. S. Yoon, Yu. Zaytsev, J. Zimmerman
18Citations signalées, ce qui n’est pas une note de qualité
71Institutions déclarées
19Pays d’affiliation déclarés
Rattachement africain : ch, tr, us, ru, jp, gb, it, ua, de, pt, bg, dk, nl, se, fr, kr, cl, rs, si.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
We propose to build and operate a detector that, for the first time, will measure the process $pp\toνX$ at the LHC and search for feebly interacting particles (FIPs) in an unexplored domain. The TI18 tunnel has been identified as a suitable site to perform these measurements due to very low machine-induced background. The detector will be off-axis with respect to the ATLAS interaction point (IP1) and, given the pseudo-rapidity range accessible, the corresponding neutrinos will mostly come from charm decays: the proposed experiment will thus make the first test of the heavy flavour production in a pseudo-rapidity range that is not accessible by the current LHC detectors. In order to efficiently reconstruct neutrino interactions and identify their flavour, the detector will combine in the target region nuclear emulsion technology with scintillating fibre tracking layers and it will adopt a muon identification system based on scintillating bars that will also play the role of a hadronic calorimeter. The time of flight measurement will be achieved thanks to a dedicated timing detector. The detector will be a small-scale prototype of the scattering and neutrino detector (SND) of the SHiP experiment: the operation of this detector will provide an important test of the neutrino reconstruction in a high occupancy environment.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
La source scientifique ouverte est momentanément indisponible.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Particle physics theoretical and experimental studiesParticle Detector Development and PerformanceNeutrino Physics Research