Molecular beam epitaxial growth of superconducting Ba2DyCu3O6.5thin films at 420 °C using NO2as an oxidant
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.108333
Reference11 articles.
1. Reflection high-energy electron diffraction oscillations during epitaxial growth of high-temperature superconducting oxides
2. Atomic layer by atomic layer growth of DyBaCuO superconducting thin films by molecular beam epitaxy
3. Reactive coevaporation of YBaCuO superconducting films
4. Molecular beam epitaxy of dysprosium barium cuprous oxides using molecular oxygen
5. Direct Interaction of a Ligand for the erb B2 Oncogene Product with the EGF Receptor and p185 erb B2
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1. NO2-assisted molecular-beam epitaxy ofFe3O4,Fe3−δO4,andγ−Fe2O3thin films on MgO(100);Physical Review B;1999-10-15
2. Compositional distribution of laser‐deposited films and rapid sequential pulsed laser deposition;Journal of Applied Physics;1995-10-15
3. Growth mechanism of DyBa2Cu3Ox superconducting thin films grown by coevaporation molecular beam epitaxy at low temperatures and growth rates;Journal of Crystal Growth;1995-08
4. Development of Oxidation Sources in Preparation of High-TcOxide Superconductor Thin Films Using the Molecular Beam Epitaxy Method;Critical Reviews in Solid State and Materials Sciences;1995-01
5. MBE Growth of High Tc Superconductors;Molecular Beam Epitaxy;1995
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