Abstract
To describe chemical ordering in solid solutions systems Warren-Cowley short-range parameters are ordinarily used. However, they are not directly suited for application to long-range ordered systems, as they do not converge to zero for large separations. In this paper, the theory is generalized to long-range ordered systems and chemical short-range order beyond the superstructure arrangements is discussed quantitatively on the example of a non-stoichiometric B2-ordered intermetallic alloy. Parameters of interatomic potentials are taken from an embedded atom method calculations and the degree of order is simulated by the Monte Carlo method. Both on-lattice and off-lattice methods, where the latter allows individual atoms to deviate from their regular lattice sites, were used, and the resulting effects are discussed.
Author supplied keywords
Cite
CITATION STYLE
Stana, M., Sepiol, B., Kozubski, R., & Leitner, M. (2016). Chemical ordering beyond the superstructure in long-range ordered systems. New Journal of Physics, 18(11). https://doi.org/10.1088/1367-2630/18/11/113051
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.