New Polymorph of SiO_2 Formed under Quasi-Hydrostatic Compression of Cristobalite
スポンサーリンク
概要
著者
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YAGI Takehiko
Institute for Solid State Physics, University of Tokyo
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Yagi Takehiko
Institute For Solid State Physics The University Of Tokyo
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Yagi Takehiko
Institute For Solid State Physics University Of Tokyo
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YAMAKATA Masaaki
Institute for Solid State Physics, University of Tokyo
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Yamakata Masaaki
Institute For Solid State Physics University Of Tokyo
関連論文
- Superconducting Properties of Pr-Based Filled Skutterudite PrRu_4As_(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- New Polymorph of SiO_2 Formed under Quasi-Hydrostatic Compression of Cristobalite
- Microscopic Brillouin Scatterirng Study in TeO_2 : Pressure Dependence of Acoustic Modes
- X-ray diffraction study of high pressure transition in InOOH
- High-Pressure Phase Transformation of Cobalt Monoxide Due to Electronic Transition
- Type-I-Type-II Transition in GaAs/AlAs Short Period Superlattices Studied under Pulsed High Magnetic Fields and High Pressures
- Analysis of Powder X-ray Diffraction Data Obtained under Uniaxial Stress Field
- Pressure Effect on Optical Absorption Coefficients for Amorphous Silicon-Germanium Alloys
- Highly Coplanar Polythiophenes with -C≡CR Side Chains : Self-Assembly, Linear and Nonlinear Optical Properties, and Piezochromism
- Brillouin Scattering Study of Pressure-Induced Phase Transition in MnF_2
- New Stishovite-like Phase of Silica formed by Hydrostatic Compression of Cristobalite
- Pressure-induced phase changes of argon hydrate and methane hydrate at room temperature
- Compressibility of Mg0.9Al0.2Si0.9O3 perovskite
- In situ X-ray Observation of Iron Hydride under High Pressure and High Temperature
- Magnetic Properties of New Filled Skutterudite Compounds Eu$T_{4}$As12 ($T=\text{Fe}$, Ru, and Os) Synthesized under High Pressure
- Space Efficient Opposed-Anvil High-Pressure Cell and Its Application to Optical and NMR Measurements up to 9 GPa
- Synthesis, Structure, and Electromagnetic Properties of Manganese Hollandite, KxMnO
- Stability of Magnesite under the Lower Mantle Conditions.
- Formation of Hexagonal Diamond by Room Temperature Compression of Graphite.
- Isothermal compression and stability of perovskite-type CaSiO3.
- Pressure Effect on Mn, Co and Ni Partitioning between Iron Hydride and Mantle Minerals.