z-logo
open-access-imgOpen Access
Substrate-dependent post-annealing effects on the strain state and electrical transport of epitaxial La5/8-yPryCa3/8MnO3 films
Author(s) -
Sixia Hu,
Haoliang Huang,
Yuanjun Yang,
Zhenlin Luo,
Mengmeng Yang,
Haibo Wang,
Yongqi Dong,
Bing Hong,
Hao He,
Jun Bao,
Chen Gao
Publication year - 2014
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4881881
Subject(s) - materials science , epitaxy , annealing (glass) , condensed matter physics , electrical resistivity and conductivity , ferromagnetism , lattice constant , lattice (music) , thin film , metal , composite material , nanotechnology , metallurgy , diffraction , electrical engineering , optics , physics , layer (electronics) , acoustics , engineering
Large scale electronic phase separation (EPS) between ferromagnetic metallic and charge-ordered insulating phases in La5/8-yPryCa3/8MnO3 (y = 0.3) (LPCMO) is very sensitive to the structural changes. This work investigates the effects of post-annealing on the strain states and electrical transport properties of LPCMO films epitaxially grown on (001)pc SrTiO3 (tensile strain), LaAlO3 (compressive strain) and NdGaO3 (near-zero strain) substrates. Before annealing, all the films are coherent-epitaxial and insulating through the measured temperature range. Obvious change of film lattice is observed during the post-annealing: the in-plane strain in LPCMO/LAO varies from −1.5% to −0.1% while that in LPCMO/STO changes from 1.6% to 1.3%, and the lattice of LPCMO/NGO keeps constant because of the good lattice-match between LPCMO and NGO. Consequently, the varied film strain leads to the emergence of metal-insulator transitions (MIT) and shift of the critical transition temperature in the electrical transport. These results demonstrate that lattice-mismatch combined with post-annealing is an effective approach to tune strain in epitaxial LPCMO films, and thus to control the EPS and MIT in the films

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here
Accelerating Research

Address

John Eccles House
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom