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  • Measurement of single-diffr...
    Asilar, E; D'Hondt, J; Beghin, D; Clerbaux, B; Lenzi, T; Magitteri, A; Marono, M Vidal; Da Costa, E M; Chen, H S; Roguljic, M; Kolosova, M; Rykaczewski, H; Rander, J; Sirois, Y; Jansová, M; Meyer, A; Müller, T; Meyer, M; Savitskyi, M; Lange, J; Stadie, H; Müller, Th; Kokkas, P; Veres, G I; Sandeep, K; Choudhary, B C; Dutta, S; Mohanty, G B; Siroli, G P; Meschini, M; Ferro, F; Lista, L; Hoh, S Y; Tosi, M; Rahatlou, S; Argiro, S; Arneodo, M; Bartosik, N; Zanetti, A; Kim, H; Yu, G B; Kim, H; Yu, I; Szleper, M; Gavrilov, V; Klyukhin, V; Caballero, I Gonzalez; Cabrillo, I J; Cortabitarte, R Vilar; Ball, A H; Lourenço, C; Perez, E; Hits, D; Theofilatos, K; De Cosa, A; Ozdemir, K; Scott, E; Khan, A; Chertok, M; Erbacher, R; Mccoll, N; Regnard, S; Yates, B R; Chang, P; Qu, H; Vorobiev, I; Mulholland, T; Tucker, J; Colafranceschi, S; Mestvirishvili, A; Sarica, U; Hadley, N J; Rankin, D; Wang, T W; Fangmeier, C; Charaf, O; Anampa, K Hurtado; Mueller, C; Ruchti, R; Taroni, S; Bylsma, B; Palmer, C; Dalchenko, M; Wang, Z; Gurrola, A; Velkovska, J; Verweij, M; Karchin, P E; Atanassov, I; Borchsh, V; Bozzo, M; Csörgő, T; Fiergolski, A; Forthomme, L; Lindsey, C; Malawski, M; Minutoli, S; Passaro, V; Royon, C; Zich, J

    The European physical journal. C, Particles and fields, 2020, Letnik: 80, Številka: 12
    Journal Article

    Measurements are presented of the single-diffractive dijet cross section and the diffractive cross section as a function of the proton fractional momentum loss and the four-momentum transfer squared . Both processes and , i.e. with the proton scattering to either side of the interaction point, are measured, where includes at least two jets; the results of the two processes are averaged. The analyses are based on data collected simultaneously with the CMS and TOTEM detectors at the LHC in proton-proton collisions at during a dedicated run with at low instantaneous luminosity and correspond to an integrated luminosity of . The single-diffractive dijet cross section , in the kinematic region , , with at least two jets with transverse momentum , and pseudorapidity , is . The ratio of the single-diffractive to inclusive dijet yields, normalised per unit of , is presented as a function of , the longitudinal momentum fraction of the proton carried by the struck parton. The ratio in the kinematic region defined above, for values in the range , is , where and are the single-diffractive and inclusive dijet cross sections, respectively. The results are compared with predictions from models of diffractive and nondiffractive interactions. Monte Carlo predictions based on the HERA diffractive parton distribution functions agree well with the data when corrected for the effect of soft rescattering between the spectator partons.