December 2016

Journal

Cascade morphology transition in bcc metals

By:
Satyawan, Wahyu; Selby, Aaron; Juslin, Niklas; Stoller, Roger E; Wirth, Brian; Kurtz, Richard
Journal Name:
Journal of Physics: Condensed Matter
Page Number:
225402
Volume:
27
Issue Number:
22
Publication Date:
December 2016
View DOI Listing:
https://doi.org/10.1088/0953-8984/27/22/225402

Abstract

Energetic atom collisions in solids induce shockwaves with complex morphologies. In this paper, we establish the existence of a morphological transition in such cascades. The order parameter of the morphology is defined as the exponent, b, in the defect production curve as a function of cascade energy (N-F similar to E-MD(b)). Response of different bcc metals can be compared in a consistent energy domain when the energy is normalized by the transition energy, mu, between the high-and the low-energy regime. Using Cr, Fe, Mo and W data, an empirical formula of mu as a function of displacement threshold energy, E-d, is presented for bcc metals.