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Department of Physics, Faculty of Science, Hiroshima University | 論文
- Measurement of the Evanescent Field Using Noncontact Mode Atomic Force Microscope
- Stability of Densely Contact-Electrified Charges on Thin Silicon Oxide in Air
- Feasibility Study on a Novel Type of Computerized Tomography Based on Scanning Probe Microscope
- Phase Transition of Contact-Electrified Negative Charges on a Thin Silicon Oxide in Air
- Atomically Resolved InP(110) Surface Observed with Noncontact Ultrahigh Vacuum Atomic Force Microscope
- Atomic-Resolution Imaging of ZnSSe(110) Surface with Ultrahigh-Vacuum Atomic Force Microscope (UHV-AFM)
- Parameter Dependence of Stable State of Densely Contact-Electrified Electrons on Thin Silicon Oxide
- Potentiometry Combined with Atomic Force Microscope
- Charge Storage on Thin SrTiO_3 Film by Contact Electrification ( FERROELECTRIC MATERIALS AND THEIR APPLICATIONS)
- Temperature Dependence of the Magnetocrystalline Anisotropy Constants K_1 and K_2 of Nickel
- Growth of a Two-Dimensional Nucleus on a Cleaved(010)Surface of (NH_2CH_2COOH)_3H_2SO_4
- Time Evolution of Surface Topography arournd a Domain Wall in Ferroelectric (NH_2CH_2COOH)_3・H_2SO_4
- Determination of Sign of Surface Charges of Ferroelectric TGS Using Electrostatic Force Microscope Combined with the Voltage Modulation Technique
- Fluctuation in Two-Dimensional Stick-Slip Phenomenon Observed with Two-Dimensional Frictional Force Microscope
- Observation of GaAs(110) Surface by an Ultrahigh-Vacuum Atomic Force Microscope
- Atomically Resolved Image of Cleaved GaAs(110) Surface Observed with an Ultrahigh Vacuum Atomic Force Microscope
- Observation of Atormic Defects on LiF(100) Surface with Ultrahigh Vacuum Atomic Force Microscope (UHV AFM)
- In Situ Imaging of Electrochemical Deposition of Ag on Au(111)
- Atomic Resolution Imaging on Si(100)2 × 1 and Si(100)2 × 1 : H Surfaces with Noncontact Atomic Force Microscopy
- Indistinct Defect Images in Topographs of Nearly Perfect Aluminum Crystals Just Prior to Appearance of Dislocation Loops : Condensed Matter: Structure, etc.