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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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 |
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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 |
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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 |
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10.1063/1.4804541 |
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MATERIALS SCIENCE AND ENGINEERING |
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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 |
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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 |
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https://scholarbank.nus.edu.sg/handle/10635/183202 |
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1800914681671450624 |