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Department of Physical Electronics, Tokyo institute of Technology | 論文
- Fully Self-Aligned Amorphous-Silicon MUS Transistors
- Detection of MUC1 and Keratin 19 mRNAs in the Bone Marrow by Quantitative RT-PCR Predicts the Risk of Distant Metastasis in Breast Cancer Patients
- Analysis of H_2-Dilution Effects on Photochemical Vapor Deposition of Si Thin Films
- Heavily B-Doped Epitaxial Si Films Grown by Photochemical Vapor Deposition at Very Low Temperature (
- Rectifying I-V Characteristics of n-Type Fluorine Implanted a-C/p-Type Si Heterojunction Diodes
- Ion Beam Induced Effects in RF Plasma Chemical Vapor Deposition Deposited Hydrogenated Amorphous Carbon Thin Films
- The Charge Transport in Organic Field-Effect Transistor as an Interface Charge Propagation: The Maxwell–Wagner Effect Model and Transmission Line Approximation
- Pulmonary tumor thrombotic microangiopathy resulting from metastatic signet ring cell carcinoma of the stomach
- Fault-Tolerant Graphs for Hypercubes and Tori (Special Issue on Architectures, Algorithms and Networks for Massively parallel Computing)
- Influence of photosynthetic activity on fatty acid production by Spirulina platensis
- Perpendicular Magnetic Anisotropy in Co/Pd Multilayered Films Prepared by Electroplating
- Theoretical Analysis of Amorphous-Silicon Field-Effect-Transistors
- Agmatine Suppresses Mesangial Cell Proliferation by Modulating Polyamine Metabolism
- GaInAs/InP Hot Electron Transistors Grown by OMVPE
- Evaluation of Hot Electron Coherent Length Using Well Width Dependence of the Resonance Characteristics of Resonant Tunneling Diodes
- Estimation of Phase Coherent Length of Hot Electrons in GaInAs Using Resonant Tunneling Diodes
- All-Optical Bistability in Nonlinear Directional Coupler Loaded with Bragg Reflector
- Erasing Characteristics and Crystallization Process of GeSbTe Phase-Change Optical Disk Media at Very Fast Linear Velocities
- STM Observation of Amorphous Marks in Phase Change Media : FUTURE TECHNOLOGY
- Crystallization of Amorphous Marks in SbTe Erasable Optical Storage Media : MEDIA