Published 1990 | Version v1
Journal article

Molecular dynamics studies of the primary state of radiation damage

  • 1. SUNY-Albany, New York (USA). Dept. of Physics
  • 2. Illinois Univ., Urbana, IL (USA). Dept. of Materials Science and Engineering
  • 3. Argonne National Lab., IL (USA)

Description

This paper summarized recent progress in the understanding of energetic displacement cascades in metals achieved with the molecular-dynamics simulation technique. Recoil events with primary-knock-on-atom energies up to 5 keV were simulated in Cu and Ni. The initial development of displacement cascades was similar in both metals, with replacement collision sequences providing the most efficient mechanism for the separation of interstitials and vacancies. The thermal-spike behavior in these metals, however, is quite different; Cu cascades are characterized by lower defect production and greater atomic disordering than those in Ni. The thermal spike significantly influences various other properties of cascades, such as total defect production and defect clustering. (author)

Additional details

Publishing Information

Journal Title
Radiation Effects and Defects in Solids
Journal Volume
113
Journal Issue
1-3
Series
Radiat. Eff. Defects Solids.
Journal Page Range
39-52
CODEN
REDSE

Conference

Title
Workshop on effects of recoil energy spectrum and nuclear transmutations on the evolution of microstructure.
Dates
24-29 Mar 1988.
Place
Lugano (Switzerland).

INIS

Country of Publication
United Kingdom
Country of Input or Organization
United Kingdom
INIS RN
21070416
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ATOMIC DISPLACEMENTS; COMPUTERIZED SIMULATION; COPPER; INTERSTITIALS; IRRADIATION; KEV RANGE 01-10; KNOCK-ON; NICKEL; RECOILS; THERMAL SPIKES; VACANCIES
Descriptors DEC
CRYSTAL DEFECTS; CRYSTAL STRUCTURE; ELEMENTS; ENERGY RANGE; KEV RANGE; METALS; PHYSICAL RADIATION EFFECTS; POINT DEFECTS; RADIATION EFFECTS; SIMULATION; TRANSITION ELEMENTS

Optional Information

Contract/Grant/Project number
Grant DE-AC02-76ERO1198; W-31-109-Eng-38