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Department of Electrical Engineering and Information Systems, the University of Tokyo | 論文
- Carbon-nanotube-deposited devices for four-wave mixing based wavelength conversion (光エレクトロニクス)
- Carbon-nanotube-deposited devices for four-wave mixing based wavelength conversion (有機エレクトロニクス)
- An Ego-Motion Detection System Employing Directional-Edge-Based Motion Field Representations
- C-4-5 Four-Wave Mixing based Wavelength Conversion using a Carbon-Nanotube-Deposited PLC Waveguide
- (2+1)Dimensional Wave Patterns of the Davey-Stewartson System(General)
- An Ego-Motion Detection System Employing Directional-Edge-Based Motion Field Representations
- Lateral Integration of Zn and Al Dots with Nanometer-Scale Precision by Near Field Optical Chemical Vapor Deposition Using a Sharpened Optical Fiber Probe(Special Issue on Near-Field Optics and Its Applications)
- Fabrication of an Ultraviolet Light-Emitting Functional Probe of Sub-Micron Size by Photochemical Vapor Deposition
- B-10-71 Frequency-Domain Adaptive Equalization for Coherent Optical Transmission System
- Stub vs. Capacitor for Power Supply Noise Reduction(Electronic Circuits)
- Quercetin Prevents Cardiac Hypertrophy Induced by Pressure Overload in Rats
- Observation of Size-Dependent Resonance of Near-Field Coupling between a Deposited Zn Dot and the Probe Apex during Near-Field Optical Chemical Vapor Deposition(Nanophotonics and Related Techniques)
- Multirefiection of Cold Atoms in a Near-Field Optical Funnel
- High Efficiency Exitation of Cylindrical Optical Near Fields for Atom Guidance
- Fluorescence Spectroscopy of Rb Atoms with Two-Color Optical Near Fields for a High-Resolution Slit-Type Detector(Special Issue on Near-Field Optics and Its Applications)
- High Spatial Resolution Atom Detector with Two-Color Optical Near Fields
- Nanophotonic Matching by Optical Near-Fields between Shape-Engineered Nanostructures
- E-3 Molecular studies on parental origin in two patients with de novo trisomy 9_q.
- New Aspects in Nanofabrication Using Near-Field Photo-Chemical Vapor Deposition
- Initial growth process of a Zn nanodot fabricated using nonadiabatic near-field optical CVD