A combination of the inclusive diffractive cross section measurements made by the H1 and ZEUS Collaborations at HERA is presented. The analysis uses samples of diffractive deep inelastic ep scattering data at a centreof-mass energy √s = 318 GeV where leading protons are detected by dedicated spectrometers. Correlations of systematic uncertainties are taken into account, resulting in an improved precision of the cross section measurement which reaches 6 % for the most precise points. The combined data cover the range 2.5<Q2 < 200 GeV2 in photon virtuality, 0.00035 < xP < 0.09 in proton fractional momentum loss, 0.09 < |t | < 0.55 GeV2 in squared four-momentum transfer at the proton vertex and 0.0018 < β <0.816 in β = x/xP, where x is the Bjorken scaling variable.

Combined inclusive diffractive cross sections measured with forward proton spectrometers in deep inelastic ep scattering at HERA

BASILE, MAURIZIO;CIFARELLI, LUISA;CONTIN, ANDREA;SARTORELLI, GABRIELLA;
2012

Abstract

A combination of the inclusive diffractive cross section measurements made by the H1 and ZEUS Collaborations at HERA is presented. The analysis uses samples of diffractive deep inelastic ep scattering data at a centreof-mass energy √s = 318 GeV where leading protons are detected by dedicated spectrometers. Correlations of systematic uncertainties are taken into account, resulting in an improved precision of the cross section measurement which reaches 6 % for the most precise points. The combined data cover the range 2.5
2012
F. D. Aaron;H. Abramowicz;I. Abt;L. Adamczyk;M. Adamus;R. Aggarwal;C. Alexa;V. Andreev;S. Antonelli;P. Antonioli;A. Antonov;M. Arneodo;O. Arslan;V. Aushev;Y. Aushev;O. Bachynska;S. Backovic;A. Baghdasaryan;S. Baghdasaryan;A. Bamberger;A. N. Barakbaev;G. Barbagli;G. Bari;F. Barreiro;E. Barrelet;W. Bartel;N. Bartosik;D. Bartsch;M. Basile;K. Begzsuren;O. Behnke;J. Behr;U. Behrens;L. Bellagamba;A. Belousov;P. Belov;A. Bertolin;S. Bhadra;M. Bindi;J. C. Bizot;C. Blohm;V. Bokhonov;K. Bondarenko;E. G. Boos;K. Borras;D. Boscherini;D. Bot;V. Boudry;I. Bozovic-Jelisavcic;T. Bołd;N. Brümmer;J. Bracinik;G. Brandt;M. Brinkmann;V. Brisson;D. Britzger;I. Brock;E. Brownson;R. Brugnera;D. Bruncko;A. Bruni;G. Bruni;B. Brzozowska;A. Bunyatyan;P. J. Bussey;A. Bylinkin;B. Bylsma;L. Bystritskaya;A. Caldwell;A. J. Campbell;K. B. Cantun Avila;M. Capua;R. Carlin;C. D. Catterall;F. Ceccopieri;K. Cerny;V. Cerny;S. Chekanov;V. Chekelian;J. Chwastowski;J. Ciborowski;R. Ciesielski;L. Cifarelli;F. Cindolo;A. Contin;J. G. Contreras;A. M. Cooper-Sarkar;N. Coppola;M. Corradi;F. Corriveau;M. Costa;J. A. Coughlan;J. Cvach;G. D’Agostini;J. B. Dainton;F. Dal Corso;K. Daum;B. Delcourt;J. Delvax;R. K. Dementiev;M. Derrick;R. C. E. Devenish;S. Pasquale;E. A. Wolf;J. Peso;C. Diaconu;M. Dobre;D. Dobur;V. Dodonov;B. A. Dolgoshein;G. Dolinska;A. Dossanov;A. T. Doyle;V. Drugakov;A. Dubak;L. S. Durkin;S. Dusini;G. Eckerlin;S. Egli;Y. Eisenberg;A. Eliseev;E. Elsen;P. F. Ermolov;A. Eskreys;S. Fang;L. Favart;S. Fazio;A. Fedotov;R. Felst;J. Feltesse;J. Ferencei;J. Ferrando;M. I. Ferrero;J. Figiel;D.-J. Fischer;M. Fleischer;A. Fomenko;M. Forrest;B. Foster;E. Gabathuler;G. Gach;A. Galas;E. Gallo;A. Garfagnini;J. Gayler;A. Geiser;S. Ghazaryan;I. Gialas;A. Gizhko;L. K. Gladilin;D. Gladkov;C. Glasman;A. Glazov;L. Goerlich;N. Gogitidze;O. Gogota;Y. A. Golubkov;P. Göttlicher;M. Gouzevitch;C. Grab;I. Grabowska-Bołd;A. Grebenyuk;J. Grebenyuk;T. Greenshaw;I. Gregor;G. Grigorescu;G. Grindhammer;G. Grzelak;O. Gueta;M. 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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/142482
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