August 2010

Journal

Attosecond Time Delays in Heavy-Ion Induced Fission Measured by Crystal Blocking,

By:
Andersen, J.; Chevallier, J.; Forster, J.; Karamian, S.; Vane, Charles R; Beene, James R; Galindo-Uribarri, Alfredo ; Gomez Del Campo, Jorge ; Gross, Carl J; Krause, Herbert ; Padilla, E.; Radford, David C; Shapira, Dan ; Broude, C.; Malaguti, F.; Uguzzoni, A.
Journal Name:
Physical Review C
Page Number:
064609
Volume:
78
Issue Number:
6
Publication Date:
August 2010
View DOI Listing:
https://doi.org/10.1103/PhysRevC.78.064609

Abstract

The time delays in fission induced by bombardment of W with 180 MeV 32S, 240-255 MeV 48Ti, 330-375 MeV 58Ni, and 390 MeV 74Ge have been measured by observation of crystal blocking. Nearly all results are consistent with exponential decay with lifetimes of order 10-18 s which depend weakly on the atomic number of the composite nucleus. This is inconsistent with the Bohr-Wheeler model of fission from a compound nucleus in statistical equilibrium at each stage in a neutron evaporation cascade and supports a picture of strongly damped quasifission. A simple diffusion model with one-body dissipation reproduces roughly the observed time scale and the exponential decay. It suggests that the outer fission barrier could play a significant role in the observed, very slow decays.