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Department Of Electronic Engineering Graduate School Of Engineering Osaka University | 論文
- Level Shift of Hyperfine Structure Due to the Lorentz Gauge Field
- Massless Lorentz Gauge Field Consistent with Einstein's Gravitation Theory : The Case α+2a/3=β-2a/3=γ+3a/2=0 : Astrophysics and Relativity
- Electrical Pump and Probe Measurements of a Quantum Dot in the Coulomb Blockade Regime
- Transport Properties of Modulation-Doped Structures Grown by Molecular Beam Epitaxy after Focused Ion Beam Implantation
- Field Emission form Bamboo-Like Multiwalled Carbon Nanotube Aarrays Enhanced by Mild Oxidation
- Polarization Reversal Process and Transient Light Scattering in Polymeric Ferroelectric Liquid Crystal
- New Bistable Electrooptic Effect in Side-Chain Ferroelectric Liquid Crystalline Polymer
- Fabrication of Zn-Indiffused LiNbO_3 Optical Waveguides Using ZnS as Diffusion Source
- Fabrication of Zn-Indiffused LiNbO_3 Optical Waveguides by Diffusing Sol-Gel Spin-Coated ZnO Film at Low-Pressure Atmosphere
- Tunable Photonic Band Schemes in Two- and Three-Dimensional Photonic Crystals with Double Periodicity and Their Applications : Optics and Quantum Electronics
- Finite-Difference Time-Domain Analysis of Polarization-Dependent Transmission in Cholesteric Blue Phase II
- Photoinduced Surface Relief Grating on Composite Film of Conducting Polymer and Polyacrylate Containing Azo-Substituent
- Electrical Stimulation with a Needle-type Electrode Inserted into the Optic Nerve in Rabbit Eyes
- Pore Symmetry Dependence of Band Gap of Nanoscale Periodic Porous Graphites with Dififerenet Pore Shapes(Electrical Properties of Condensed Matter)
- LARGE DEVIATIONS BOUNDS FOR A POLLING SYSTEM WITH MARKOVIAN ON/OFF SOURCES AND BERNOULLI SERVICE SCHEDULE
- ADMISSION CONTROL FOR A POLLING SYSTEM WITH MARKOV-MODULATED ARRIVAL PROCESSES AND BERNOULLI SERVICE SCHEDULE
- PERFORMANCE ANALYSIS OF A TWO-QUEUE MODEL WITH AN (M,N)-THRESHOLD SERVICE SCHEDULE
- Properties of Polaron Pairs in Conjugated Polymers Studied by Two-Correlated-Pulses Technique(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Smectic Layer Rotation in Ferroelectric Liquid Crystals
- Smectic Layer Rotation in Antiferroelectric Liquid Crystal