The influence of the composition on the crystallographic properties of deposited Mg (M) O (with M=Al, Cr, Ti, Y, and Zr) films is studied. For a flexible control of the composition, dual reactive magnetron sputtering was used as deposition technique. Two different approaches to predict the composition are discussed. The first is an experimental way based on the simple relationship between the deposition rate and the target-substrate distance. The second is a route using a Monte Carlo based particle trajectory code. Both methods require a minimal experimental input and enable the user to quickly predict the composition of complex thin films. Good control and flexibility allow us to study the compositional effects on the growth of Mg (M) O films. Pure MgO thin films were grown with a (111) preferential out-of-plane orientation. When adding M to MgO, two trends were noticed. The first trend is a change in the MgO lattice parameters compared to pure MgO. The second tendency is a decrease in the crystallinity of the MgO phase. The experimentally determined crystallographic properties are shown to be in correspondence with the predicted properties from molecular dynamics simulations. © 2010 American Institute of Physics.
CITATION STYLE
Saraiva, M., Georgieva, V., Mahieu, S., Van Aeken, K., Bogaerts, A., & Depla, D. (2010). Compositional effects on the growth of Mg (M) O films. Journal of Applied Physics, 107(3). https://doi.org/10.1063/1.3284949
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