English

Strain, Young's modulus, and structural transition of EuTiO3 thin films probed by micro-mechanical methods

Materials Science 2023-10-09 v2 Strongly Correlated Electrons

Abstract

EuTiO3 (ETO) is a well-known complex oxide mainly investigated for its magnetic properties and its incipient ferro-electricity. In this work, we demonstrate the realization of suspended micro-mechanical structures, such as cantilevers and micro-bridges, from 100 nm-thick single-crystal epitaxial ETO films deposited on top of SrTiO3(100) substrates. By combining profile analysis and resonance frequency measurements of these devices, we obtain the Young's modulus, strain, and strain gradients of the ETO thin films. Moreover, we investigate the ETO anti-ferro-distorsive transition by temperature-dependent characterizations, which show a non-monotonic and hysteretic mechanical response. Comparison between experimental and literature data allows us to weight the contribution from thermal expansion and softening to the tuning slope, while a full understanding of the origin of such a wide hysteresis is still missing. We also discuss the influence of oxygen vacancies on the reported mechanical properties by comparing stoichiometric and oxygen-deficient samples.

Keywords

Cite

@article{arxiv.2307.01022,
  title  = {Strain, Young's modulus, and structural transition of EuTiO3 thin films probed by micro-mechanical methods},
  author = {Nicola Manca and Gaia Tarsi and Alexei Kalaboukhov and Francesco Bisio and Federico Caglieris and Floriana Lombardi and Daniele Marré and Luca Pellegrino},
  journal= {arXiv preprint arXiv:2307.01022},
  year   = {2023}
}

Comments

8 pages, 5 figures; 7 Supplementary Material sections

R2 v1 2026-06-28T11:20:46.825Z