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Division Of Physics Hokkaido University | 論文
- High Field Magnetism in the Heavy Electron Systems : Chapter 6. Magnetic Properties : 6-1. Measurements under Extreme Conditions
- High-Field Faraday Effect of Tb-Doped Glass Above Paramagnetic Saturation
- Photoinduced Absorption Spectra of Halogen-bridged Binuclear Metal Complexes : Possible Contrast between R_4[Pt_2(P_2O_5H_2)_4X]・nH_2O and Pt_2(CH_3CS_2)_4I(Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
- The Haldane State in CsNiCl_3 Detected by Magnetization Measurements:Observation of Quantum-Classical Crossover and the Valence Bond Solid State
- High Field Magnetization of Quasi One Dimensional Ising Antiferromagnet CsCoCl_3
- Zeeman Effect of R-Lines in Alexandrite under High Magnetic Fields
- High Field Magnetoabsorption of Hydrogenic Excitons at Second Direct Gap in InSe
- Optical Spectrum of R'-Band in Spin Reorientated YbCrO_3 under High Magnetic Field
- Optical Absorption Spectrum in YbCrO_3 under High Magnetic Field
- On the Density Matrix of Nonequilibrium Steady-State Statistical Mechanics
- Nuclear Spin-Lattice Relaxation in One-Dimensional Heisenberg Ferrimagnets : Three-Magnon vs Raman Processes(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Collective Mode of Spin-Density-Wave in (TMTSF)_2ClO_4 : Condensed Matter: Electronic Properties, etc.
- Depinning of Spin-Density-Wave in (TMTSF)_2ClO_4 : Condensed Matter: Electronic Properties, etc.
- Nonmagnetic Impurity Effects in MgB_2(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Aging Phenomena of Magnetization in a Hierarchical Diffusion Model
- Theory of Flux-Flow Resistivity near H_ for s-Wave Type-II Superconductors
- Spin-Wave Description of Haldane-Gap Antiferromagnets
- Nuclear Magnetic Relaxation in the Haldane-Gap Antiferromagnet Ni(C_2H_8N_2)_2NO_2(ClO_4) (Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Spin-Wave Description of Haldane-Gap Antiferromagnets
- Static and Dynamic Properties of Antiferromagnetic Heisenberg Ladders : Fermionic versus Bosonic Approaches (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
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