Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films

10.1063/1.4804541

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Main Authors: Wang, L.F, Tan, X.L, Chen, P.F, Zhi, B.W, Chen, B.B, Huang, Z, Gao, G.Y, Wu, W.B
Other Authors: MATERIALS SCIENCE AND ENGINEERING
Format: Article
Published: 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/183202
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spelling sg-nus-scholar.10635-1832022024-04-25T01:02:19Z Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films Wang, L.F Tan, X.L Chen, P.F Zhi, B.W Chen, B.B Huang, Z Gao, G.Y Wu, W.B MATERIALS SCIENCE AND ENGINEERING NUS NANOSCIENCE & NANOTECH INITIATIVE Anisotropic strain Annealing parameters Antiferromagnetics Epitaxial quality Orthorhombic lattices Oxide heterostructures Oxygen atmosphere Phase instability Annealing Antiferromagnetism Calcium Epitaxial growth Ground state Manganese oxide Phase separation Epitaxial films 10.1063/1.4804541 AIP Advances 3 5 52106 2020-11-10T00:31:12Z 2020-11-10T00:31:12Z 2013 Article Wang, L.F, Tan, X.L, Chen, P.F, Zhi, B.W, Chen, B.B, Huang, Z, Gao, G.Y, Wu, W.B (2013). Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films. AIP Advances 3 (5) : 52106. ScholarBank@NUS Repository. https://doi.org/10.1063/1.4804541 21583226 https://scholarbank.nus.edu.sg/handle/10635/183202 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic Anisotropic strain
Annealing parameters
Antiferromagnetics
Epitaxial quality
Orthorhombic lattices
Oxide heterostructures
Oxygen atmosphere
Phase instability
Annealing
Antiferromagnetism
Calcium
Epitaxial growth
Ground state
Manganese oxide
Phase separation
Epitaxial films
spellingShingle Anisotropic strain
Annealing parameters
Antiferromagnetics
Epitaxial quality
Orthorhombic lattices
Oxide heterostructures
Oxygen atmosphere
Phase instability
Annealing
Antiferromagnetism
Calcium
Epitaxial growth
Ground state
Manganese oxide
Phase separation
Epitaxial films
Wang, L.F
Tan, X.L
Chen, P.F
Zhi, B.W
Chen, B.B
Huang, Z
Gao, G.Y
Wu, W.B
Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
description 10.1063/1.4804541
author2 MATERIALS SCIENCE AND ENGINEERING
author_facet MATERIALS SCIENCE AND ENGINEERING
Wang, L.F
Tan, X.L
Chen, P.F
Zhi, B.W
Chen, B.B
Huang, Z
Gao, G.Y
Wu, W.B
format Article
author Wang, L.F
Tan, X.L
Chen, P.F
Zhi, B.W
Chen, B.B
Huang, Z
Gao, G.Y
Wu, W.B
author_sort Wang, L.F
title Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
title_short Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
title_full Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
title_fullStr Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
title_full_unstemmed Annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial La0.67Ca 0.33MnO3/NdGaO3(001) films
title_sort annealing assisted substrate coherency and high-temperature antiferromagnetic insulating transition in epitaxial la0.67ca 0.33mno3/ndgao3(001) films
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/183202
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