Abstract
Dynamics of the fluctuation growth are studied. Time characteristics are key quantities to determine the conditions under which spinodal decomposition could be observed. Dynamical instabilities arising from fluctuations in spinodal zone for nuclear matter are studied using Skyrme type interactions within a pseudo-particle model. Typical times for cluster formation are extracted. The numerical treatment is based on the Vlasov phase space transport equation. (K.A.) 11 refs.; 7 figs.
Citation Formats
Idier, D, Farine, M, Benhassine, B, Remaud, B, and Sebille, F.
Time characteristics for the spinodal decomposition in nuclear matter.
France: N. p.,
1992.
Web.
Idier, D, Farine, M, Benhassine, B, Remaud, B, & Sebille, F.
Time characteristics for the spinodal decomposition in nuclear matter.
France.
Idier, D, Farine, M, Benhassine, B, Remaud, B, and Sebille, F.
1992.
"Time characteristics for the spinodal decomposition in nuclear matter."
France.
@misc{etde_10146435,
title = {Time characteristics for the spinodal decomposition in nuclear matter}
author = {Idier, D, Farine, M, Benhassine, B, Remaud, B, and Sebille, F}
abstractNote = {Dynamics of the fluctuation growth are studied. Time characteristics are key quantities to determine the conditions under which spinodal decomposition could be observed. Dynamical instabilities arising from fluctuations in spinodal zone for nuclear matter are studied using Skyrme type interactions within a pseudo-particle model. Typical times for cluster formation are extracted. The numerical treatment is based on the Vlasov phase space transport equation. (K.A.) 11 refs.; 7 figs.}
place = {France}
year = {1992}
month = {Dec}
}
title = {Time characteristics for the spinodal decomposition in nuclear matter}
author = {Idier, D, Farine, M, Benhassine, B, Remaud, B, and Sebille, F}
abstractNote = {Dynamics of the fluctuation growth are studied. Time characteristics are key quantities to determine the conditions under which spinodal decomposition could be observed. Dynamical instabilities arising from fluctuations in spinodal zone for nuclear matter are studied using Skyrme type interactions within a pseudo-particle model. Typical times for cluster formation are extracted. The numerical treatment is based on the Vlasov phase space transport equation. (K.A.) 11 refs.; 7 figs.}
place = {France}
year = {1992}
month = {Dec}
}