Takashi Nakajima

Affiliations: 
Kyoto University, Kyōto-shi, Kyōto-fu, Japan 
Google:
"Takashi Nakajima"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Ando K, Uchimoto Y, Nakajima T. (2020) Single-shot laser-scattering technique refined for the real-time monitoring and sizing of individual nanoparticles and nanobubbles in bulk water. Optics Letters. 45: 3321-3324
Das RM, Ishida K, Iwasaki M, et al. (2020) Excitation probability of the hyperfine ground state of Doppler-broadened muonic hydrogen through dipole-forbidden transition Optik. 200: 163380
Faniayeu I, Ishimatsu Y, Nakajima T. (2019) Surface plasmon resonance tuning of Ag nanoisland films using a CO2 laser Journal of Physics D. 52: 295103
Kashihara K, Uto Y, Nakajima T. (2018) Rapid in situ synthesis of polymer-metal nanocomposite films in several seconds using a CO laser. Scientific Reports. 8: 14719
Maurya SK, Nakajima T, Mizobata K, et al. (2018) Real-time observation of structural change in semi-crystalline polymer films through mid-IR transmission spectroscopy: determination of instantaneous film temperature during recrystallization. Optics Express. 26: 21615-21625
Das RM, Ishida K, Iwasaki M, et al. (2018) Nuclear-spin polarization of atoms by chirped laser pulses: application to the muonium Journal of the Optical Society of America B-Optical Physics. 35: 1799-1810
Maurya SK, Uto Y, Kashihara K, et al. (2018) Rapid formation of nanostructures in Au films using a CO2 laser Applied Surface Science. 427: 961-965
Nakajima T, Wang X, Chatterjee S, et al. (2016) Observation of number-density-dependent growth of plasmonic nanobubbles. Scientific Reports. 6: 28667
Chatterjee S, Nakajima T. (2016) Resonant Auger Electron dynamics in bi-chromatic Laser field Photonics
Maurya SK, Mizobata K, Nakajima T, et al. (2016) Time-resolved detection of structural change in dye-doped crystalline polymer films using mid-IR laser pulses Photonics
See more...