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Japan Atomic Energy Res. Inst. Ibaraki | 論文
- Optical Investigation of the Magnetic Excitations in Two- Dimensional Triangular Lattice Antiferromagnets
- Optical Investigation of the Soliton in the One-Dimensional Ising-Like Antiferromagnet CsCoCl_3.II
- Optical Investigations of YbCrO_3 under High Magnetic Fields. II. Cr^-Yb^ Two-Exciton Absorption
- Optical Investigations of YbCrO_3 under High Magnetic Fields. I. Yb^ Absorption Spectra
- Mossbauer Study of Uranium Compounds
- Nuclear Magnetic Moment of the First Excited State (I=2^+)of^U
- Field-induced Ferromagnetic Correlation in the Metamagnetic Crossover in CeRu_2Si_2 as Studied by Neutron Scattering(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Field-Induced Ferromagnetic Correlation in the Heavy-Fermion Compound CeRu2Si2 (Proceedings of the 1st International Symposium on Advanced Science Research(ASR-2000), Advances in Neutron Scattering Research)
- Magnetization and Spin Correlation of Two-Dimensional Triangular Antiferromagnet LuFe_2O_4
- Two-Dimensional Spin Correlation in YFe_2O_4
- PdZn=Cu : Can an Intermetallic Compound Replace an Element?(Cross-disciplinary Physics and Related Areas of Science and Technology)
- 中性子反射率法で見る磁性薄膜材料の磁気構造
- Spin Density Wave in Epitaxial Cr(001)/Sn and Cr(001)/Au Multilayers with Nonmagnetic Spacer Layers : Condensed Mater: Structure, etc.
- Dynamical Magnetic Structure of the Spin Density Wave State in Cr
- Magnetic Excitations in Spin Density Wave (SDW) State of Cr
- First Evidence of Interfacial Magnetic Roughness in Fe/Cr Artificial Multilayer Studied by Neutron Diffraction Measurement
- Neutron Diffraction Study of C14-Laves Phase TbMn_2
- Neutron Diffraction Study on the Crystal Orientation of Y-Ba-Cu-O Superconducting Material Aligned in the Magnetic Field
- Neutron Diffraction Study on Preferred Orientation of Ag-Sheathed Y-Ba-Cu-O Superconductor Tape with J_c=1000-3000 A / cm^2 : Electrical Properties of Condensed Matter
- Modulated Structure of Misfit-Layered Cobalt Oxide [Ca_2(Co_Cu_)_2O_4]_CoO_2