Search Results1-14 of  14

  • IMURA Kohei ID: 9000000196943

    Department of Chemistry, Graduate School of Science, Osaka University (2001 from CiNii)

    Articles in CiNii:3

    • Observation of Relative Population Change in the ^3P_0 and ^3P_2 States for Ar Glow Discharge Formation (1996)
    • Evidence for the HCI^+(A) Formation in the Reaction of Ne(^3P) with the Size-Selected HCI Dimer Using an Electrostatic Hexapole Field (2001)
    • Active Control of the Relative Population of ^<3>P_0 Fine-State in the Glow Discharge of a Supersonic Ar Beam (1997)
  • IMURA Kohei ID: 9000001680947

    Institute for Molecular Science and The Graduate University for Advanced Studies (2006 from CiNii)

    Articles in CiNii:1

    • Near-field Imaging of Surface-enhanced Raman Active Sites in Aggregated Gold Nanoparticles (2006)
  • IMURA Kohei ID: 9000002105763

    Institute for Molecular Science and the Graduate University for Advanced Studies (2008 from CiNii)

    Articles in CiNii:1

    • Development of Novel Near-Field Microspectroscopy and Imaging of Local Excitations and Wave Functions of Nanomaterials (2008)
  • IMURA Kohei ID: 9000019191355

    Department of Chemistry and Biochemistry, Waseda University (2012 from CiNii)

    Articles in CiNii:1

    • Sub-20-fs Time-Resolved Measurements in an Apertured Near-Field Optical Microscope Combined with a Pulse-Shaping Technique (2012)
  • IMURA Kohei ID: 9000020606715

    Waseda University, 3-4-1 Okubo, Shinjyuku, Tokyo 169-8555, Japan (2010 from CiNii)

    Articles in CiNii:1

    • FDTD Simulated Observation of a Gold Nanorod by Scanning Near-Field Optical Microscopy (2010)
  • Imura Kohei ID: 1000080342632

    Articles in CiNii:22

    • Dynamics and plasmon mode imaging of gold nanorods (2005)
    • プラズモン共鳴帯の先鋭化 : 微粒子配列による効果 (2005)
    • Plasmon Wavefunction Imaging and Dynamic Near-Field Optical Microscopy of Noble Metal Nanoparticles (2006)
  • Imura Kohei ID: 9000025045240

    Articles in CiNii:1

    • Near-field optical imaging of nanoscale optical fields and plasmon waves (Special issue: Scanning probe microscopy) (2008)
  • Imura Kohei ID: 9000256016160

    Department of Chemistry, Graduate School of Science, Osaka University (1997 from CiNii)

    Articles in CiNii:1

    • Active Control of the Relative Population of 3PO Fine-State in the Glow Discharge of a Supersonic Ar Beam. (1997)
  • Imura Kohei ID: 9000256026899

    Institute for Molecular Science and the Graduate University for Advanced Studies (2008 from CiNii)

    Articles in CiNii:1

    • Development of Novel Near-Field Microspectroscopy and Imaging of Local Excitations and Wave Functions of Nanomaterials (2008)
  • Imura Kohei ID: 9000257708734

    Department of Chemistry, Faculty of Science, Osaka University (1996 from CiNii)

    Articles in CiNii:1

    • Observation of Relative Population Change in the 3P0 and 3P2 States for Ar Glow Discharge Formation. (1996)
  • Imura Kohei ID: 9000257715509

    Department of Chemistry, Graduate School of Science, Osaka University|Institute for Molecular Science (2001 from CiNii)

    Articles in CiNii:1

    • Evidence for the HCl+(A) Formation in the Reaction of Ne(3P) with the Size-Selected HCl Dimer Using an Electrostatic Hexapole Field. (2001)
  • Imura Kohei ID: 9000345347871

    Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University (2016 from CiNii)

    Articles in CiNii:1

    • Photobleaching-Assisted Near-Field Absorption Spectroscopy: Its Application to Single Tubular J-Aggregates (2016)
  • Imura Kohei ID: 9000402819096

    Department of Chemistry and Biochemistry, School of Advanced Science and Engineering, Waseda University (2019 from CiNii)

    Articles in CiNii:1

    • Plasmon Enhanced Optical Responses of Diarylethene Molecules Adsorbed on Gold Nanorods (2019)
  • Imura Kohei ID: 9000404109921

    School of Advanced Science and Engineering, Waseda University (2019 from CiNii)

    Articles in CiNii:1

    • Nanoscopic Visualization of Fluorescence Excitation Probability on Two-dimensional Periodical Gold Nanohole Arrays (2019)
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