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Fingerprint Dive into the research topics where Hiroyuki Nishikawa is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Engineering & Materials Science

Proton beams
Fused silica
Photoluminescence
Silica
Ions
Fabrication
Defects
Oxygen
Excimer lasers
Polydimethylsiloxane
Aspect ratio
Luminescence
Refractive index
Microstructure
Irradiation
Oxygen vacancies
Lithography
Protons
Absorption spectra
Electrophoresis
Polymers
Paramagnetic resonance
Microfabrication
Electroplating
Micromachining
Photons
Vacuum
Annealing
Point defects
Hydrogen
Optical waveguides
Nanoparticles
Plasma enhanced chemical vapor deposition
Laser beam effects
Plasma CVD
Photoluminescence spectroscopy
Nuclear energy
Microscopes
Scanning
Atomic force microscopy
Photosensitivity
Optical properties
Polyimides
Ion implantation
Ultraviolet lasers
Escherichia coli
Particle accelerators
Thin films
Compaction

Physics & Astronomy

Physics

proton beams
microbeams
photoluminescence
ions
luminescence
absorption spectra
refractivity
vacuum
electron paramagnetic resonance
optical absorption
nanoparticles
hydrogen ions

Chemistry and Materials

silica glass
silicon dioxide
oxygen
glass

General

defects
purity
excimer lasers
high aspect ratio
microstructure
fluence
ion implantation
decay
point defects

Engineering

fabrication
irradiation
micromachining
electroplating
lithography

Chemical Compounds

Fused silica
Proton beams
Silicon Dioxide
Photoluminescence
Ions
Oxygen
Defects
Excimer lasers
Luminescence
Refractive index
Fabrication
Irradiation
Paramagnetic resonance
Absorption spectra
Photons
Oxygen vacancies
Polymethyl Methacrylate
Annealing
Aspect ratio
Plasma CVD
Hydrogen
Vacuum
Photoluminescence spectroscopy
Electroplating
Atomic force microscopy
Optical properties
carbopol 940
Lithography
Point defects
Compaction