Symmetry mismatch controlled ferroelastic domain ordering and the functional properties of manganite films on cubic miscut substrates
Author(s) -
Binod Paudel,
Kyeong Tae Kang,
Yogesh Sharma,
Heinrich Nakotte,
Dmitry Yarotski,
Aiping Chen
Publication year - 2021
Publication title -
physical chemistry chemical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.053
H-Index - 239
eISSN - 1463-9084
pISSN - 1463-9076
DOI - 10.1039/d1cp01957k
Subject(s) - manganite , microstructure , materials science , condensed matter physics , epitaxy , domain (mathematical analysis) , thin film , symmetry (geometry) , cubic crystal system , work (physics) , domain wall (magnetism) , crystallography , nanotechnology , chemistry , composite material , ferromagnetism , thermodynamics , magnetization , physics , geometry , mathematics , layer (electronics) , quantum mechanics , magnetic field , mathematical analysis
We have studied the magnetotransport properties and strain release mechanisms in ferroelastic La0.9Sr0.1MnO3 (LSMO) epitaxial thin films on SrTiO3 (STO)(001) substrates with different miscut angles. The substrate miscut angle plays a critical role in releasing shear strain and has a huge impact on the properties of the films. The strain relaxes by monoclinic distortion for films on low miscut substrates and for higher miscut substrates, the strain relaxation causes the formation of periodic twin domains with larger periodicities. We observe that the Curie temperature (TC) decreases systematically, and magnetoresistance (MR) increases with increasing the miscut angle. Such changes in the magnetic and transport properties could be due to the increased density of phase boundaries (PBs) with the increase of miscut angle. This work provides a way to tailor film microstructures and subsequent functional properties of other complex oxide films on miscut substrates with symmetry mismatch.
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