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Department of Applied Physics, the University of Tokyo | 論文
- Selective Growth of Cubic GaN in Small Areas on Patterned GaAs(100) Substrates by Metalorganic Vapor Phase Epitaxy
- Transmission Electron Microscope Observation of Cubic GaN Grown by Metalorganic Vapor Phase Epitaxy with Dimethylhydrazine on (001) GaAs
- GaAsP Layers Grown on (111)-Oriented GaAs Substrates by Metalorganic Vapor Phase Epitaxy
- Metal-Organic Vapor Phase Epitaxy Growth and Optical Study of GaAs/GaAs_P_x Strained-Barrier Single Quantum Well Structures
- Control of Macroscopic Absorption Coefficient of Multicrystalline SiGe by Microscopic Compositional Distribution : Semiconductors
- Nonequilibrium Distribution of the Microscopic Thermal Current in Steady Thermal Transport Systems
- Energy Transport in Lennard-Jones Particle System(The 50th Anniversary of the Alder Transition -Recent Progress on Computational Statistical Physics-)
- Microscopic Energy Flux in Particle Systems and Nonlinear Lattices(The 50th Anniversary of the Alder Transition -Recent Progress on Computational Statistical Physics-)
- Nonequilibrium Microscopic Distribution of Thermal Current in Particle Systems(General)
- Distribution of Microscopic Energy Flux in Equilibrium State
- Energy Transport in Multiphase System (General)
- Energy Transport in Multiphase System
- Simulational Study on Dimensionality Dependence of Heat Conduction : Fluids, Plasmas, and Electric Discharges
- A simple and efficient purification of transduced cells by using green fluorescent protein gene as a selection marker
- Photoconductivity in Semiconducting Single-Walled Carbon Nanotubes
- Measurements of the Depth Profile of the Refractive Indices in Oxide Films on SiC by Spectroscopic Ellipsometry
- Epitaxial Growth of Bi-Sr-Ca-Cu-O Thin Films by Molecular Beam Epitaxy Technique with Shutter Control
- Superconducting Films of YBa_2Cu_3O_x and Bi-Sr-Ca-Cu-O Fabricated by Electron-Beam Deposition with a Single Source : Electrical Properties Condensed Matter
- In Situ Preparation of Superconducting Bi_2Sr_2Ca_Cu_nO_y(n=1〜5) Thin Films by Molecular Beam Epitaxy Technique
- Improved methods of HIV vector mediated gene transfer