
- nature materials | VOL 3 | SEPTEMBER 2004 | www.nature.com/naturematerials 601 ince 1993, InGaN light-emitting diodes (LEDs) have been
- Photothermal molecular sensing by using metal thin-film nanograting for chemical and biomedical applications
- Confocal microphotoluminescence of InGaN-based light-emitting diodes Koichi Okamoto,a
- Spatial Inhomogeneity of Photoluminescence in InGaN Single Quantum Well Structures
- TuA3.1 (invited) 1:30pm-2:OO pm
- Proceedings of BiOS, Photonics West 2001, No.4252-27, San Jose, 2001. Time-Resolved Fluorescence Spectroscopy of Dopamine
- Photothermal processes of wide-bandgap semiconductors probed by the transient grating method
- DOI: 10.1002/cphc.200600060 Cu2O Nanowires in an Alumina Template
- Diffusion Process of the Benzyl Radical Created by Photodissociation Probed by the Transient Grating Method
- Mask pattern transferred transient grating technique for molecular-dynamics study in solutions
- Diusion of electrically neutral radicals and anion radicals created by photochemical reactions
- phys. stat. sol. (a) 183, 41 (2001) Subject classification: 72.20.Jv; 78.47.+p; S7.14
- Translational Diffusion of Ion Radicals Created by Electron Transfer in Charged Micellar Solutions Probed by the Transient Grating Method and the Taylor Dispersion Method
- Submicron-Scale Photoluminescence of InGaN/GaN Probed by Confocal Scanning Laser Microscopy
- phys. stat. sol. (b) 240, No. 2, 337343 (2003) / DOI 10.1002/pssb.200303427 2003 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
- Diffusion of Platinum Ions and Platinum Nanoparticles during Photoreduction Processes Using the Transient Grating Method
- *Corresponding author. Tel.: #81-75-753-7577; fax: #81-75-753-7579.
- Erratum: ``Ultrafast polarized fluorescence dynamics in an organic dendrimer'' Appl. Phys. Lett. 77, 1120 ,,2000...
- Near-field scanning optical microscopic transient lens for carrier dynamics study in InGaN/GaN
- Diffusion of Photochemically Generated Intermediate Radicals in Water-Ethanol Mixed Koichi Okamoto, Noboru Hirota, and Masahide Terazima*,
- Contribution of hydrogen bonding to the slow diffusion of transient radicals
- INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF PHYSICS: CONDENSED MATTER J. Phys.: Condens. Matter 13 (2001) 69937010 PII: S0953-8984(01)25842-1
- Carrier Dynamics in InGaN/GaN SQW Structure Probed by the Transient Grating Method
- Ultralow threshold on-chip microcavity nanocrystal quantum dot lasers Bumki Min and Sungjee Kima
- Time resolved photoluminescence spectroscopy of surface-plasmon-enhanced light emission
- Surface-plasmon enhanced bright emission from CdSe quantum-dot nanocrystals
- Molecular dynamics study of photochromic molecules probed by the mask pattern transferred transient grating technique
- Surface plasmon enhanced spontaneous emission rate of InGaN/GaN quantum wells probed by time-resolved photoluminescence spectroscopy
- Surface plasmon enhanced emission from dye doped polymer layers
- phys. stat. sol. (c) 2, No. 7, 28412844 (2005) / DOI 10.1002/pssc.200461540 2005 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
- phys. stat. sol. (b) 240, No. 2, 368371 (2003) / DOI 10.1002/pssb.200303391 2003 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
- Nonradiative recombination processes of carriers in InGaNGaN probed by the microscopic transient lens spectroscopy
- Spatial and temporal luminescence dynamics in an InxGa1xN single quantum well probed by near-field optical microscopy
- Comments on "Diffusion of Free Radicals in Solution. TEMPO, Diphenylpicrylhydrazyl, and
- Temperature dependence of diffusion of radical intermediates probed by the transient grating method
- Translational diffusion of transient radicals created by the photoinduced hydrogen abstraction reaction in solution: Anomalous size
- J. Phys. Chem. 1993, 97, 13387-13393 13387 Transient Radical Diffusion in Photoinduced Hydrogen Abstraction Reactions of Benzophenone
- 5188 J. Phys. Chem. 1993,97, 5188-5192 Diffusion Process of Methyl Red in Organic Solvents Studied by the Transient Grating Method
- Surface plasmon enhanced InGaN light emitter Koichi Okamoto*a
- Photonic BandgapMicrocavitiesand Waveguides A. Scherer, M. Loncar, T. Yoshie, K. Okamoto, B. Maune, J. Witzens
- Photonic Bandgap Microcavity Devices A. Scherer, M. Loncar, T. Yoshie,K. Okamoto
- * Correspondence: Email: kokamoto@vbl.kyoto-u.ac.jp; Telephone: +81-75-753-7577; Fax: +81-75-753-7579 Direct observation of the nonradiative recombination processes in
- Near-field Scanning Optical Microscopy of Photonic Crystal Laser Koichi Okamoto*, Tomoyuki Yoshie, Marko Loncar