English

Weak ferromagnetism and short range polar order in NaMnF$_3$ thin films

Materials Science 2017-04-05 v2

Abstract

The orthorhombically distorted perovskite NaMnF3_{3} has been predicted to become ferroelectric if an a=ca=c distortion of the bulk PnmaPnma structure is imposed. In order to test this prediction, NaMnF3_{3} thin films were grown on SrTiO3_{3} (001) single crystal substrates via molecular beam epitaxy. The best films were smooth and single phase with four different twin domains. In-plane magnetization measurements revealed the presence of antiferromagnetic ordering with weak ferromagnetism below the N\'eel temperature TN=66T_N=66 K. For the dielectric studies, NaMnF3_{3} films were grown on a 30 nm SrRuO3_{3} (001) layer used as a bottom electrode grown via pulsed laser deposition. The complex permittivity as a function of frequency indicated a strong Debye-like relaxation contribution characterized by a distribution of relaxation times. A power-law divergence of the characteristic relaxation time revealed an order-disorder phase transition at 8 K. The slow relaxation dynamics indicated the formation of super-dipoles (superparaelectric moments) that extend over several unit cells, similar to polar nanoregions of relaxor ferroelectrics.

Keywords

Cite

@article{arxiv.1611.00845,
  title  = {Weak ferromagnetism and short range polar order in NaMnF$_3$ thin films},
  author = {Amit KC and Pavel Borisov and Vladimir V. Shvartsman and David Lederman},
  journal= {arXiv preprint arXiv:1611.00845},
  year   = {2017}
}

Comments

4 pages, 3 figures