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Kansai Advanced Research Center Communications Research Laboratory | 論文
- Sum-Frequency Generation near 194 nm with an External Cavity by Simultaneous Enhancement of Frequency-Stabilized Fundamental Lasers
- Tunable 397 nm Light Source for Laser Cooling of Ca Ions Based on Frequency Doubling of Diode Laser
- Laser Cooling of Ca^+ Ions and Observation of Collision Effects
- Doppler-Free Optogalvanic Spectroscopy of Ca^+ and Ca
- Measurement of Electrical Characteristics of Stored Be^+ Ions in a Penning Trap
- High-Resolution Magnetic Force Microscope Images of a Magnetic Particle Chain Extracted from Magnetic Bacteria AMB-1
- A Circuit for Tuning Superconductor-Insulator-Superconductor Mixers Using Distributed Tunnel Junctions
- Multispectral Imaging Fluorescence Microscopy for Living Cells
- Multiple-color Fluorescence Imaging of Chromosomes and Microtubules in Living Cells
- Computer Simulation for Molecular Orientation of Vanadyl Phthalocyanine in Epitaxial Form
- Josephson Array Oscillators Using Resonant Effects in Shunted Tunnel Junctions (Special Issue on Toward Digital and Analog Applications of Superconductors)
- Optical Pulse Generation from a Frequency Modulated Er-Doped Fiber Laser by Frequency Filtering
- Widely-Chirped High-Repetition-Rate Continuous Wave FM Laser Oscillation in Erbium Fiber Ring Laser
- A Novel Technique for Optical Generation of Millimeter-Wave Signals Using Multiple Phase-Locked Lasers(Special Issue on Recent Progress in Microwave and Millimeter-wave Photonics Technologies)
- Design and Construction of an Advisory Dialogue Data base
- All-NbN Single Flux Quantum Circuits Based on NbN / AlN / NbN Tunnel Junctions(Special Issue on Superconductive Devices and Systems)
- Fluctuation of actin sliding over myosin thick filaments in vitro
- Improvement of Inlet System in Spray-Jet Molecular Beam Apparatus
- Investigation of Terahertz Emission Phenomena of High-$T_{\text{c}}$ Superconductors
- A Compact 209-nm Deep UV cw Light Source for Spectroscopy Using Frequency Doubling of a Diode Laser