Droplet formation in expanding nuclear matter: a system-size dependent study

Autor: Reisdorf, W., Rami, E., Schauenburg, B. de, Leifels, Y., Alard, J.P., Andronic, A., Barret, V., Basrak, Zoran, Bastid, N., Benabderrahmane, M.L., Čaplar, Roman, Crochet, P., Dupieux, P., Dželalija, Mile, Fodor, Z., Gobbi, A., Grishkin, Y., Hartmann, O.N., Herrmann, N., Hildenbrand, K.D., Hong, B., Kecskemeti, J., Kim, Y.J., Kirejczyk, M., Koczon, P., Korolija, Milorad, Kotte, R., Kress, T., Lebedev, A., Lopez, X., Merschmeyer, M., Mosner, J., Neubert, W., Pelte, D., Petrovici, M., Schuttauf, A., Seres, Z., Sikora, B., Sim, K.S., Siwek-Wilczynska, K., Smolyankin, V., Stockmeier, M., Stoicea, G., Tyminski, Z., Wagner, P., Wisniewski, K., Wohlfarth, D., Xiao, Z.G., Yushmanov, I., Zhilin, A.
Jazyk: angličtina
Rok vydání: 2004
Předmět:
Popis: Cluster production is investigated in central collisions of Ca + Ca, Ni + Ni, ^96Zr + ^96Zr, ^96Ru + ^96Ru, Xe + CsI and An + An reactions at 0.4 A GeV incident energy. We find that the multiplicity of clusters with charge Z greater than or equal to 3 grows quadratically with the system's total charge and is associated with a midrapidity source with increasing transverse velocity fluctuations. When reduced to the same number of available charges, an increase of cluster production by about a factor of 5.5 is observed in the midrapidity region between the lightest system (Ca + Ca) and the heaviest one (An + An). The results, as well as simulations using quantum molecular dynamics, suggest a collision process where droplets, i.e., nucleon clusters, are created in an expanding, gradually cooling, nucleon gas. Within this picture, expansion dynamics, collective radial flow and cluster formation are closely linked as a result of the combined action of nucleon-nucleon scatterings and the mean fields.
Databáze: OpenAIRE