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      Particle emission following Coulomb excitation in ultrarelativistic heavy-ion collisions

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          Abstract

          We study nuclear reactions induced by virtual photons associated with Lorentz-boosted Coulomb fields of ultrarelativistic heavy ions. Evaporation, fission and multifragmentation mechanisms are included in a new RELDIS code, which describes the deexcitation of residual nuclei formed after single and double photon absorption in peripheral heavy-ion collisions. Partial cross sections for different dissociation channels, including the multiple neutron emission ones, are calculated and compared with data when available. Rapidity and transverse momentum distributions of nucleons, nuclear fragments and pions, produced electromagnetically, are also calculated. These results provide important information for designing large-rapidity detectors and zero-degree calorimeters at RHIC and LHC. The electromagnetic dissociation of nuclei imposes some constrains on the investigation of exotic particle production in gamma-gamma fusion reactions.

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          Measurements of the giant dipole resonance with monoenergetic photons

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            Photoneutron Cross Sections of\({\mathrm{Tb}}^{159}\)and\({\mathrm{O}}^{16}\)

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              Electromagnetic dissociation of relativistic heavy ions

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                Author and article information

                Journal
                22 January 1999
                Article
                10.1103/PhysRevC.60.044901
                nucl-th/9901061
                05ed92cd-a267-4aa3-a99b-f92244754583
                History
                Custom metadata
                Phys.Rev. C60 (1999) 044901
                26 LaTeX pages including 8 figures, uses epsf.sty
                nucl-th

                Nuclear physics
                Nuclear physics

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