High-pressure studies of layered organic superconductors up to 9 GPa: research of pressure effect on exactly and nearly half-filled systems in organics (Proceedings of the international workshop on recent progress in the high pressure research: Novel Pres
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概要
著者
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Okuhata Takahiro
Department Of Physics Faculty Of Science Saitama University
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Taniguchi H
Department Of Physics Kyushu University
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Nagai Takuya
Department Of Physics Faculty Of Science Saitama University
関連論文
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- Characteristic of Dielectric Behaviour of Ferroelectric Liquid Crystal at Smectic-A and Chiral Smectic-C Phase Transition
- Effect of the Molecular Structure of the Chiral Part on Spontaneous Polarization and Dielectric Properties of Ferroelectric Liquid Crystals
- Neutron Diffraction Study of Crystal Structures of Deuterated Glycinium Phosphite in Paraelectric and Ferroelectric Phases(Condensed Matter : Structure, Mechanical and Thermal Properties)
- Neutron Diffraction Study of Crystal Structures of Deuterated Glycinium Phosphite in Paraelectric and Ferroelectric Phases
- Neutron Diffraction Study of Crystal Structures of Glycinium Phosphite H_3NCH_2COOH・H_2PO_3 in Paraelectric and Ferroelectric Phases (Condensed Matter: Structure, Mechanical and Thermal Properties)
- Neutron Diffraction Study of Crystal Structures of Glycinium Phosphite H_3NCH_2COOH・H_2PO_3 in Paraelectric and Ferroelectric Phases
- Anomalous Pressure Dependence of Superconductivity in Layered Organic Conductor, κ-(BEDT-TTF)_4Hg_Br_8(Condensed matter : electronic structure and electrical, magnetic, and optical properties)
- High-Pressure Study up to 9.9GPa of Organic Mott Insulator, β'-(BEDT-TTF)_2AuCl_2(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Superconductuvity at 14.2K in Layered Organics under extreme Pressure
- High-pressure studies of layered organic superconductors up to 9 GPa: research of pressure effect on exactly and nearly half-filled systems in organics (Proceedings of the international workshop on recent progress in the high pressure research: Novel Pres