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Extreme Ultraviolet Lithography System Dev. Assoc. (euva) Kanagawa Jpn | 論文
- Highly Uniform Si-Doped GaAs Epitaxial Layers Grown by MBE Using a TEG, Arsenic, and Silicon System
- Substrate Temperature Dependence of Carbon Incorporation into GaAs Grown by MBE Using Triethylgallium and As_4
- Highly Uniform, High-Purity GaAs Epitaxial Layer Grown by MBE Using Triethylgallium and Arsenic : Semiconductors and Semiconductor Devices
- GaAs Surface Cleaning with HCl Gas and Hydrogen Mixture for Molecular-Beam-Epitaxial Growth : Semiconductors and Semiconductor Devices
- Effect of Thermal Etching on GaAs Substrate in Molecular Beam Epitaxy
- The Effect of Annealing on the Electrical Properties of Selectively Doped GaAs/N-AlGaAs Heterojunction Structures Grown by MBE
- The Effect of Growth Temperature on the Mobility of Two-Dimensional Electron Gas in Selectively Doped GaAs/N-AlGaAs Heterostructures Grown by MBE
- Electronic States in Selectively Si-Doped N-AlGaAs/GaAs/N-AlGaAs Single Quantum Well Structures Grown by MBE
- Improved 2DEG Mobility in Inverted GaAs/n-AlGaAs Heterostructures Grown by MBE
- Improved Electron Mobility Higher than 10^6 cm^2/Vs in Selectively Doped GaAs/N-AlGaAs Heterostructures Grown by MBE
- Implantation into an AlGaAs/GaAs Heterostructure : B-6: III-V DEVICE TECHNOLOGY
- Dependence of the Mobility and the Concentration of Two-Dimensional Electron Gas in Selectively Doped GaAs/N-Al_xGa_As Heterostructure on the AlAs Mole Fraction
- Electrical Properties of Si-Doped Al_xGa_As Layers Grown by MBE
- Recording Power Characteristics of 130mm Overwritable MO Disk by Laser Power Modulation Method
- Direct Overwrite by Light Power Modulation on Magneto-Optical Multi-Layered Media : DRIVE TECHNIQUE
- Optimum Recording Conditions of Direct Overwrite Magneto-Optical Disk Drive for the Widest Power Margin
- Modeling Thermal Diffusion of Scanned and Focused Laser Power on Direct Overwrite Magneto-Optical Disk
- 2 GB/130 mm Capacity Direct-Overwrite Magneto-Optical Disk
- C/N Improvement of Direct Overwrite Magneto-Optical Disk by Adding a GdFeCo Readout Layer : Media