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  • Measurement of dijet produc...
    Alexa, C.; Andreev, V.; Baghdasaryan, S.; Begzsuren, K.; Belousov, A.; Brandt, G.; Brisson, V.; Britzger, D.; Bruncko, D.; Bunyatyan, A.; Buschhorn, G.; Campbell, A. J.; Cerny, V.; Chekelian, V.; Contreras, J. G.; Cvach, J.; Daum, K.; De Wolf, E. A.; Diaconu, C.; Dobre, M.; Dodonov, V.; Eckerlin, G.; Eliseev, A.; Elsen, E.; Favart, L.; Ferencei, J.; Glazov, A.; Gogitidze, N.; Grebenyuk, A.; Greenshaw, T.; Grell, B. R.; Grindhammer, G.; Henschel, H.; Hreus, T.; Huber, F.; Jacquet, M.; Janssen, X.; Jönsson, L.; Kenyon, I. R.; Kiesling, C.; Kluge, T.; Kogler, R.; Kostka, P.; Kretzschmar, J.; Krüger, K.; Lange, W.; Lebedev, A.; Lendermann, V.; Levonian, S.; List, J.; Makankine, A.; Malinovski, E.; Maxfield, S. J.; Meyer, A. B.; Meyer, H.; Milcewicz-Mika, I.; Moreau, F.; Morris, J. V.; Newman, P. R.; Niebuhr, C.; Nikitin, D.; Nowak, K.; Ozerov, D.; Pandurovic, M.; Papadopoulou, Th; Pascaud, C.; Perez, E.; Picuric, I.; Piec, S.; Pitzl, D.; Polifka, R.; Povh, B.; Raicevic, N.; Roosen, R.; Rotaru, M.; Ruiz Tabasco, J. E.; Šálek, D.; Sankey, D. P. C.; Sauter, M.; Sauvan, E.; Schoeffel, L.; Schöning, A.; Sefkow, F.; Shtarkov, L. N.; Soloviev, Y.; South, D.; Spaskov, V.; Specka, A.; Staykova, Z.; Stoicea, G.; Tseepeldorj, B.; Turnau, J.; Valkárová, A.; Van Mechelen, P.; Vazdik, Y.; Wünsch, E.; Zálešák, J.; Zhang, Z.; Zhokin, A.; Zomer, F.

    The European physical journal. C, Particles and fields, 04/2012, Letnik: 72, Številka: 4
    Journal Article

    The cross section of diffractive deep-inelastic scattering ep → eXp is measured, where the system X contains at least two jets and the leading final state proton is detected in the H1 Forward Proton Spectrometer. The measurement is performed for fractional proton longitudinal momentum loss x ℙ <0.1 and covers the range 0.1<| t |<0.7 GeV 2 in squared four-momentum transfer at the proton vertex and 4< Q 2 <110 GeV 2 in photon virtuality. The differential cross sections extrapolated to | t |<1 GeV 2 are in agreement with next-to-leading order QCD predictions based on diffractive parton distribution functions extracted from measurements of inclusive and dijet cross sections in diffractive deep-inelastic scattering. The data are also compared with leading order Monte Carlo models.