Re. Stoller et Af. Calder, Statistical analysis of a library of molecular dynamics cascade simulations in iron at 100 K, J NUCL MAT, 283, 2000, pp. 746-752
An extensive database of atomic displacement cascades in iron has been deve
loped using molecular dynamics (MD) simulations. Simulations have been carr
ied out at temperatures of 100, 600, and 900 K, and at energies between 0.1
0 and 50 keV. The results presented here focus on the simulations conducted
at 100 K. A sufficient number of cascades has been completed under each co
ndition of cascade energy and temperature to obtain statistically significa
nt average values for the primary damage production parameters. The statist
ical analysis has been used to examine the influence of primary knockon dir
ection, simulation cell-size, and lattice heating by the high energy recoil
. A surprising effect of primary knockon atom (PKA) direction was observed
up to 1 keV, but little effect of lattice heating was detected. We have pre
viously reported preliminary results indicating that the ratio of surviving
point defects to the number calculated by the Norgett-Robinson-Torrens (NR
T) displacement model appears to pass through a minimum value of about 20 k
eV. The present analysis supports the statistical significance of this mini
mum, which call be attributed to the onset of extensive subcascade formatio
n. (C) 2000 Elsevier Science B.V. All rights reserved.