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High Field Laboratory For Superconducting Materials Institute For Materials Research Tohoku Universi | 論文
- Mysterious Paramagnetic States of Fe 3d Spin in Antiferromagnetic Insulator of λ-BETS_2FeCl_4 System(Condensed matter: structure and mechanical and thermal properties)
- X-ray Powder Diffraction Studies of Mn_3Ga_Al_C in Magnetic Fields
- Fermi Surface Study of Quasi-Two-Dimensional Organic Conductors by Magnetooptical Measurements(Condensed Matter : Electric Structure, Electical, Magnetic and Optical Properties)
- Observation of High-Order Harmonic Resonances in Magnetooptical Measurements of (BEDT-TTF)_2Br(DIA)
- 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
- Density Profile Effects On Confinement and MHD Stability of Currentless NBI Plasmas in Heliotron E
- Spectrum Identification of Heliotron E Plasma Impurities by a Time-Resolving Grazing Incidence Spectrometer with a Multichannel Detector : Nuclear Science, Plasmas and Electric Discharges
- Observation of Reverse Transformation in Metamagnetic Shape Memory Alloy Ni_Co_Mn_Al_ by High-Field X-Ray Diffraction Measurements
- Recent H-mode Results on ECH Plasmas in Heliotron J
- Cyclotron Resonance and Magnetic Resonance in GdSb (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- Cyclotron Resonance in PrSb
- Cyclotron Resonance in CeSb(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Spin Reorientation of Mn_Fe_xSb
- Field Induced Transitions in Rare Earth Intermetallic Compounds RX and RX_2 (R=Er, Ho, Dy, Tb and Gd and X=Ag and Au)(Magnetism)
- Magnetic Properties of Cubic Intermetallic Compounds RCu_4Pd (R=Gd,Tb,Dy,Ho and Er)
- Metamagnetic Properties of the Intermetallic Compounds ErAu and HoAu
- Electric Resistivity and Thermal Expansion of DyAu_2
- Temperature- and Field-Induced First-Order Ferromagnetic Transitions in MnFe(P_Ge_x)(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Dependence of Plasma Profiles on Ech Power Absorption in Heliotron-E
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