English

Preferential Orientation Relationships in Ca$_2$MnO$_4$ Ruddlesden-Popper thin films

Materials Science 2015-07-29 v1

Abstract

A high-throughput investigation of local epitaxy (called combinatorial substrate epitaxy) was carried out on Ca2_2MnO4_4 Ruddlesden-Popper thin films of six thicknesses (from 20 to 400 nm), all deposited on isostructural polycrystalline Sr2_2TiO4_4 substrates. Electron backscatter diffraction revealed grain-over-grain local epitaxial growth for all films, resulting in a single orientation relationship (OROR) for each substrate-film grain pair. Two preferred epitaxial ORsORs accounted for more than 90 \% of all ORs on 300 different microcrystals, based on analyzing 50 grain pairs for each thickness. The unit cell over unit cell OROR ([100][001]film_{film} \parallel [100][001]substrate_{substrate}, or OR1OR1) accounted for approximately 30 \% of each film. The OROR that accounted for 60 \% of each film ([100][001]film_{film} \parallel [100][010]substrate_{substrate}, or OR2OR2) corresponds to a rotation from OR1OR1 by 90^{\circ} about the a-axis. OR2OR2 is strongly favored for substrate orientations in the center of the stereographic triangle, and OR1OR1 is observed for orientations very close to (001) or to those near the edge connecting (100) and (110). While OR1OR1 should be lower in energy, the majority observation of OR2OR2 implies kinetic hindrances decrease the frequency of OR1OR1. Persistent grain over grain growth and the absence of variations of the OROR frequencies with thickness implies that the growth competition is finished within the first few \si{\nano\meter}, and local epitaxy persists thereafter during growth.

Keywords

Cite

@article{arxiv.1505.01344,
  title  = {Preferential Orientation Relationships in Ca$_2$MnO$_4$ Ruddlesden-Popper thin films},
  author = {M. Lacotte and A. David and G. S. Rohrer and P. A. Salvador and W. Prellier},
  journal= {arXiv preprint arXiv:1505.01344},
  year   = {2015}
}

Comments

15 pages, 4 figures, Submitted to Journal Applied Physics