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Department Of Physics Faculty Of Science And Technology Keio University | 論文
- X-Ray Diffraction Study on Thermal Properties of Crystal Lattices in CeP and CeAs
- 24aWP-1 量子干渉効果による磁壁ラチェット(24aWP 磁化ダイナミクス,領域3(磁性,磁気共鳴))
- "Spin-Driven" Crystal Lattice Distortion in Frustrated Magnet CuFeO_2 : Synchrotron X-ray Diffraction Study(Condensed Matter : Structure, Mechanical and Thermal Properties)
- Anomalous Uniaxial Pressure Effect on the Phase IV Ordering in CexLa1-xB6 (Proceedings of the International Conference on Strongly Correlated Electrons with Orbital Degrees of Freedom(ORBITAL2001))
- Pressure-Induced Magnetic Phase Transition of the 5f Electron System URu2Si2 (Frontiers in Magnetism)
- Effect of Magnetic Transitions and Charge-Ordering on Crystal Lattice in Nd_Sr_MnO_3
- Bifurcations of an Inelastic Hard Disk System with a Heat Bath under Weak Gravity
- Lattice Constants, Electrical Resistivity and Specific Heat of RNiC_2(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- 28aPS-95 直流電流と高周波電流により誘起される強磁性ナノ細線のスピンダイナミクス(28aPS 領域3ポスターセッション(スピントロニクス・フラストレーション系・実験技術),領域3(磁性,磁気共鳴))
- 28aPS-94 強磁性単結晶細線における結晶磁気異方性と磁壁移動(28aPS 領域3ポスターセッション(スピントロニクス・フラストレーション系・実験技術),領域3(磁性,磁気共鳴))
- 27pPSB-2 空間的に非対称な磁気的結合を有する強磁性細線中の磁壁移動(27pPSB 領域3ポスターセッション,領域3(磁性,磁気共鳴))
- Flux Pinning Mechanism of High-T_c Y-Ba-Cu-O Superconductor Containing Artificial Pinning Centers Y_2BaCuO_5
- Temperature and Magnetic Field Dependences of Flux Pinning Force in High-T_c Superconductor Tl_2Ba_2Ca_2Cu_3O_x
- Electronic Structure of Metal-Semiconductor Superlattice
- Lattice Vibrational Properties of Crystalline Si-Ge Alloys
- Magnetization Study of the Valence Fluctuation Compound Sm_3Te_4 at Very Low Temperatures
- Amorphization from Quenched High-Pressure Phase at Low Temperatures and High Pressures in Semiconductors
- Native Response of C. elegans Encoded in Its Neuron Network : Cross-Disciplinary Physics
- Does a Randomly Organized Electrical Circuit Function as a Neuronal System?
- Theory of Artificial Atoms and Molecules using Semiconductor Quantum Dots
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