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Department Of Physics Faculty Of Science And Technology Keio University | 論文
- Best Pair of 3.3-μm-Band Transitions for Isotopomer Abundance Ratio Measurements of 13CH4 to 12CH4
- Peptides derived from human insulin-like growth factor-II mRNA binding protein 3 can induce human leukocyte antigen-A2-restricted cytotoxic T lymphocytes reactive to cancer cells
- Wavenumber Measurement of the 1.5-μm Band of Acetylene by Semiconductor Laser Spectrometer
- Highly Sensitive Cavity-Enhanced Sub-Doppler Spectroscopy of a Molecular Overtone Band with a 1.66 μm Tunable Diode Laser
- Observation of Saturation Spectrum of the 2ν_3 Band of Methane
- Frequency-Domain Measurement of Cavity Ring-Down Spectroscopy
- Observations of Single Magnetic Domain Wall in Nanomagnet by Magnetic Force Microscopy
- Electronic Structures of Few Electrons in a Quantum Dot under Magnetic Fields ( Quantum Dot Structures)
- The Method of Generating Function Applied to Radiative and Non-Radiative Transitions of a Trapped Electron in a Crystal
- X-Ray Diffraction Studies on Magneto-Volume Effect and the First Order Phase Transition in Lu(Co_Ga_x)_2 : Condensed Matter: Electronic Properties, etc.
- Relaxation Modes and Rates of a Single Polymer Chain in a Periodic Array of Obstacles
- Optical Analogues of Time-Reversal Experiments in a Quantum Chaotic System Using a Phase-Conjugation Mirror
- Repeat FDG-PET for Predicting Pathological Tumor Response and Prognosis after Neoadjuvant Treatment in Nonsmall Cell Lung Cancer : Comparison with Computed Tomography
- Diaphragm Perforation after Radio-Frequency Ablation for Metastatic Lung Cancer
- Three Young Osteosarcoma Patients with Small Adenocarcinoma or Atypical Adenomatous Hyperplasia of the Lung
- New Method of Frequency Stabilization of Semiconductor Lasers : Waves, Optics and Quantum Electronics
- Influences of Internal Fields of Fast Modulation to the Kondo Effect
- Feynman Rule of a Quantum System with Finite Time Interval
- Nonequilibrium Transport Properties through Parallel Quantum Dots ( Quantum Dot Structures)
- Many-Body States in a Quantum Dot under High Magnetic Fields