Flow angle from intermediate mass fragment measurements (CROSBI ID 81055)
Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija
Podaci o odgovornosti
Rami, F. ; Crochet, P. ; Dona, R. ; De Schauenburg, B. ; Wagner, P. ; Alard, J.P. ; Andronic, A. ; Basrak, Zoran ; Bastid, N. ; Belyaev, I. ; Bendarag, A. ; Berek, G. ; Best, D. ; Čaplar, Roman ; Devismes, A. ; Dupieux, P. ; Dželalija, Mile ; Eskef, M. ; Fodor, F. ; Gobbi, A. ; Grishkin, Y. ; Herrman, N. ; Hildenbrand, K.D. ; Hong, B. ; Kecskemeti, J. ; Kirejczyk, M. ; Korolija, Milorad ; Kotte, R. ; Lebedev, A. ; Leifels, Y. ; Merlitz, H. ; Mohren, S. ; Moisa, D. ; Neubert, W. ; Pelte, D. ; Petrovici, M. ; Pinkenburg, C. ; Plettner, C. ; Reisdorf, W. ; Schuell, D. ; Seres, Z. ; Sikora, B. ; Simion, V. ; Siwek-Wilczynska, K. ; Stoicea, G. ; Stockmeir, M. ; Vasiliev, M. ; Wisniewski, K. ; Wohlfarth, D. ; Yushmanov, I. ; Zhilin, A.
engleski
Flow angle from intermediate mass fragment measurements
Directed sideward flow of light charged particles and intermediate mass fragments was measured in different symmetric reactions at bombarding energies from 90 to 800 A MeV. The flow parameter is found to increase with the charge of the detected fragment up to Z = 3-4 and then turns into saturation for heavier fragments. Guided by simple simulations of an anisotropic expanding thermal source, we show that the value at saturation can provide a good estimate of the flow angle in the participant region. It is found that flow angle depends strongly on the impact parameter. The excitation function of flow angle reveals striking deviations from the ideal hydrodynamical scaling. The data exhibit a steep rise of flow angle to a maximum at around 250-400 A mev, followed by a moderate decrease as the bombarding energy increases further.
nuclear reactions; measured light; intermediate charged fragments; rapidity distributions; flow angle; expanding thermal source; hydrodynamical scaling
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