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Optoelectronics And High Frequency Device Research Laboratories Nec Corporation | 論文
- Architecture Evaluation Based on the Datapath Structure and Parallel Constraint (Special Section on VLSI Design and CAD Algorithms)
- Anisotropic Optical Matrix Elements in Quantum Wells with Various Substrate Orientations
- Nanoscale InP Islands for Quantum Box Structures by Hydride Vapor Phase Epitaxy
- Room Temperature cw Operation of Visible InGaAsP Double Heterostructure Laser at 671 nm Grown by Hydride VPE
- VPE-Grown 1.3 μm InGaAsP/InP Double-Channel Planar Buried-Heterostructure Laser Diode with LPE-Burying Layers
- Band Line-up of InAsP/InAlGaAs Quantum Well
- Conduction-Band Discontinuity of InAsP/InP Heterojunction
- Effects of Spectral Broadening and Cross Relaxation on the Gain Saturation Characteristics of Quantum Dot Laser Amplifiers
- Preparation of ZBLAN Fluoride Glass Particles by Chemical Vapor Deposition Process
- Oxygen Doping Effects on Thermal Properties of ZrF_4-BaF_2 Glasses Synthesized by Plasma-Enhanced Chemical Vapor Deposition
- Optical Recombination Processes in High-Quality GaN Films and InGaN Quantum Wells Grown on Facet-Initiated Epitaxial Lateral Overgrown GaN Substrates
- Optical Recombination Processes in High Quality GaN Films and InGaN Quantum Wells Grown on FIELO-GaN Substrates
- Blue Electroluminescent SrGa_2S_4:Ce Thin Films Grown by Molecular Beam Epitaxy
- Preparation ZnO Films by Low-Pressure Organometallic Chemical Vapor Deposition
- Mechanism of Photoinduced Charge Transfer in Co(Li)-Doped ZnO Film
- Theoretical Consideration on Photochromism of an Oxide Doped with Transition-Metal Ions in Strong Electric Field
- NO_2 Sensitive Ga-doped ZnO Thin Film
- Electrical and Optical Properties of Ca_Sr_xCuO_2 Films Prepared by Organometallic Chemical Vapor Deposition Method
- Two-Dimensional Cyclic Bias Device Simulator and Its Application to GaAs HJFET Pulse Pattern Effect Analysis (Special Issue on TCAD for Semiconductor Industries)
- Reconsideration of the Giant Oscillator Strength Effect of Wannier Excitons