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Modification of the omega-meson lifetime in nuclear matter
Authors:Kotulla M  Trnka D  Mühlich P  Anton G  Bacelar J C S  Bartholomy O  Bayadilov D  Beloglazov Y A  Bogendörfer R  Castelijns R  Crede V  Dutz H  Ehmanns A  Elsner D  Ewald R  Fabry I  Fuchs M  Essig K  Funke Ch  Gothe R  Gregor R  Gridnev A B  Gutz E  Höffgen S  Hoffmeister P  Horn I  Hössl J  Jaegle I  Junkersfeld J  Kalinowsky H  Klein Frank  Klein Fritz  Klempt E  Konrad M  Kopf B  Krusche B  Langheinrich J  Löhner H  Lopatin I V  Lotz J  Lugert S  Menze D  Messchendorp J G  Mertens T  Metag V  Mosel U  Nanova M  Novotny R  Ostrick M  Pant L M  van Pee H  Pfeiffer M  Roy A  Radkov A  Schadmand S  Schmidt Ch  Schmieden H  Schoch B  Shende S  Suft G
Institution:II Physikalisches Institut, Universit?t Giessen, Giessen, Germany.
Abstract:Information on hadron properties in the nuclear medium has been derived from the photoproduction of omega mesons on the nuclei C, Ca, Nb, and Pb using the Crystal Barrel/TAPS detector at the ELSA tagged photon facility in Bonn. The dependence of the omega-meson cross section on the nuclear mass number has been compared with three different types of models: a Glauber analysis, a Boltzmann-Uehling-Uhlenbeck analysis of the Giessen theory group, and a calculation by the Valencia theory group. In all three cases, the inelastic omega width is found to be 130-150 MeV/c(2) at normal nuclear matter density for an average 3-momentum of 1.1 GeV/c. In the rest frame of the omega meson, this inelastic omega width corresponds to a reduction of the omega lifetime by a factor approximately 30. For the first time, the momentum dependent omegaN cross section has been extracted from the experiment and is in the range of 70 mb.
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