Oyamada Akira | Graduate School Of Human And Environmental Studies Kyoto University
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概要
関連著者
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Oyamada Akira
Graduate School Of Human And Environmental Studies Kyoto University
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OYAMADA Akira
Graduate School of Human and Environmental Studies, Kyoto University
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Maegawa Satoru
Graduate School Of Human And Environmental Studies Kyoto University
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MAEGAWA Satoru
Graduate School of Human and Environmental Studies, Kyoto University
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Oyamada A
Graduate School Of Human And Environmental Studies Kyoto University
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Gotoh Takayuki
Institute For Materials Research Tohoku University
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Goto Takao
Graduate School Of Human And Environmental Studies Kyoto University
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HASHI Kenjiro
National Institute for Materials Science (NIMS)
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Goto T
Univ. Tokyo Chiba
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Goto Tsuneaki
Institute For Solid State Physics University
著作論文
- Novel Frustrated Behavior in Quantum Heisenberg Antiferromagnets on the Pyrochlore Lattice : NMR Studies of R_2(OH)_3Cl (R = Cu and Ni)
- Spin Gap State of S = 1/2 Heisenberg Antiferromagnet YbAl_3C_3(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Quadrupolar Ordering in YbSb Studied by ^Sb and ^Sb NMR(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Empirical Relation of Nuclear Magnetic Relaxation and Specific Heat in Heavy Fermion Compounds
- NMR Study of a Heavy Fermion Compound YbAs
- Mixing-Typed Antiferroquadrupolar Ordering in YbSb : Condensed Matter: Electronic Properties, etc.
- Observation of Successive Phase Transitions in Kagome Lattice Antiferromagnets RFe_3(OH)_6(SO_4)_2「R=NH_4,Na,K]
- Nuclear Magnetic Relaxation of ^1H in the Organic Radical Salts m-MPYNN^+・ClO^-_4 and m-MPYNN^+・BF^-_4 : Condensed Matter: Electronic Properties, etc.
- NMR Study of the S=1/2 Quantum Kagome Lattice Antiferromagnet [Cu_3(titmb)_2(CH_3CO_2)_6]・H_2O(Frustrated Systems, Field-Induced Phase Transitions and Dynamics in Quantum Spin Systems)
- Novel Frustrated Behavior in Quantum Heisenberg Antiferromagnets on the Pyrochlore Lattice: NMR Studies of R2(OH)3Cl ($\text{R} = \text{Cu}$ and Ni)