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Author: Enders_G
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M. Gui, K. Hagel, R. Wada, Y. Lou, D. Utley, B. Xiao, J. Li, J. B. Natowitz, G. Enders, W. Kühn, V. Metag, R. Novotny, O. Schwalb, R. J. Charity, R. Freifelder, A. Gobbi, W. Henning, K. D. Hildenbrand, R. Mayer, R. S. Simon, J. P. Wessels, G. Casini, A. Olmi, and A. A. Stefanini
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The multiplicities of p and α particles detected in coincidence with fragments emitted in fully relaxed collisions in the reactions of 18.5A MeV 136Xe+48Ti have been measured for different exit channel mass asymmetries. A kinematic source analysis of the spectra and angular distributions of the light particles has been used to separate the total multiplicities into prescission and postscission contributions. From these results, the excitation energies at scission are determined using an empirical technique based upon previous measurements of light charged particle multiplicities observed in coincidence with evaporation residues. These excitation energies are found to decrease from ∼400 MeV to 110 MeV as the fragment mass asymmetry, AH/AL, varies from 4.8 to 1.0. A corresponding increase of the mean lifetime of the scissioning nucleus from ∼5×10-22 s to ∼1×10-20 s is derived using calculated statistical model decay widths. The extent to which this variation of lifetime with mass asymmetry may be attributed to completely damped deep inelastic collisions or to dynamic delays in the decay of a compound nucleus is discussed as is the need for inclusion of dynamics in the deexcitation calculations for hot nuclei. Observed three fragment events are also discussed.
Phys. Rev. C 48, 1791 (1993)
Cited 5 times
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2.
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S. Riess, G. Enders, A. Hofmann, W. Kühn, V. Metag, R. Novotny, W. Mittig, Y. Schutz, A. C. Villari, H. Emling, H. Grein, E. Grosse, W. Henning, R. Holzmann, R. Kulessa, T. Matulewicz, and H. J. Wollersheim
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Based on the systematics for hard photon production a scheme is suggested which relates the hard-photon multiplicity observed in intermediate energy heavy ion reactions to the impact parameter. The method is applied to data obtained in an exclusive experiment of the reaction 40Ar+158Gd at 44 MeV/nucleon, demonstrating the usefulness of this new approach.
Phys. Rev. Lett. 69, 1504 (1992)
Cited 8 times
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G. Enders, F. D. Berg, K. Hagel, W. Kühn, V. Metag, R. Novotny, M. Pfeiffer, O. Schwalb, R. J. Charity, A. Gobbi, R. Freifelder, W. Henning, K. D. Hildenbrand, R. Holzmann, R. S. Mayer, R. S. Simon, J. P. Wessels, G. Casini, A. Olmi, and A. A. Stefanini
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High-energy γ rays have been measured in coincidence with heavy fragents in deeply inelastic reactions of 136Xe+48Ti at 18.5 MeV/nucleon. The giant dipole resonance (GDR) strength function is deduced from an analysis of the photon spectra within the statistical model. The GDR width Γ is studied as a function of the fragment excitation energy E*. A saturation at about Γ=10 MeV is observed for E*/A≥1.0 MeV/nucleon.
Phys. Rev. Lett. 69, 249 (1992)
Cited 21 times
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