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Diffraction dissociation of nuclei in 450 GeV/c proton-nucleus collisions
Authors:T. ?kesson, S. Almehed, A. L. S. Angelis, H. Atherton, P. Aubry, H. W. Bartels, G. Beaudoin, J. M. Beaulieu, H. Beker  O. Benary  etAlia"  >,et al.
Affiliation:T. ?kesson, S. Almehed, A. L. S. Angelis, H. Atherton, P. Aubry, H. W. Bartels, G. Beaudoin, J. M. Beaulieu, H. Beker and O. Benary, et al.
Abstract:Diffractive dissociation of nuclei (Be, Al, W) in collisions with 450 GeV/c protons,pArarrpX, has been measured with the HELIOS spectrometer at the CERN Super Proton synchrotron. The dependence of the single-diffraction cross-section on the nuclear massA can be parametrized as sgrSD mb×A0.35±0.02, showing the peripheral nature of the process. The differential cross-section dsgrSD=(3.8±0.3)mb ×A0.35±0.02, is exponential with the slope parameter, increasing from 6.2±0.4 (GeV/c)–2 for beryllium to 7.9±0.5 (GeV/c)–2 for tungsten. The slope parameter also increases with increasing massMX of the diffractively produced state. The rapidity, multiplicity, and transverse-momentum distributions of the particles of the diffractively produced stateX show a longitudinal phase-space population and are remarkably insensitive to the nuclear mass. This, together with theA1/3 dependence of sgrSD, suggests that the dominant process of nuclear diffractive excitation is the dissociation of single nucleons.Deceased
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