Spin Polarization of Alternate Monatomic Epitaxial 〔Fe/Co〕n Superlattice
スポンサーリンク
概要
著者
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Rajanikanth Ammanabrolu
National Institute For Materials Science
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TAKAHASHI Yukiko
National Institute for Materials Science
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Hono Kazuhiro
National Inst. For Materials Sci. (nims) Ibaraki Jpn
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Doi Masaaki
Department Of Crystalline Materials Science Faculty Of Engineering Nagoya University
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Sahashi Masashi
Department Of Electronic Engineering Graduate School Of Engineering Tohoku University
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Chu In
Department of Electronic Engineering, Tohoku University, Sendai 980-8579, Japan
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- PREFACE
- Microstructures and the Magnetic Properties of Fe_3B/(Nd, Dy)_2Fe_B Nanocomposite Microalloyed with Cu and Zr
- Preparation of a Nd-Fe-B Bond Magnet using High Frequency Magnetic Fields
- Structural Properties of Alternate Monatomic Layered [Fe/Co]n Epitaxial Films on MgO Substrate
- Spin Polarization of Alternate Monatomic Epitaxial 〔Fe/Co〕n Superlattice
- Microscopic Observation of the Interface between a Tool Surface and Deposits of Low-Carbon Free Cutting Steel
- Challenge to the Synthesis of \alpha''-Fe
- Growth of a High-Quality Ultrathin Fe(001) Layer on MgO(001) by Insertion of an Ultrathin \gamma-Fe
- Challenge to the Synthesis of α"-Fe₁₆N₂ Compound Nanoparticle with High Saturation Magnetization for Rare Earth Free New Permanent Magnetic Material
- Growth of a High-Quality Ultrathin Fe(001) Layer on MgO(001) by Insertion of an Ultrathin γ-Fe₂O₃ Layer
- Challenge to the Synthesis of α"Fe_N_2 Compound Nanoparticle with High Saturation Magnetization for Rare Earth Free New Permanent Magnetic Material