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

Engineering & Materials Science

Plasmas
Plasma CVD
Solar cells
Chemical vapor deposition
Semiconductor quantum dots
Nanoparticles
Deposition rates
Irradiation
Amorphous silicon
Silanes
Hydrogen
Substrates
Amplitude modulation
Seed
Volume fraction
Atmospheric pressure
Dilution
Crystalline materials
Carbon films
Electrodes
Fabrication
Magnetron sputtering
Dust
Buffer layers
Sputtering
Energy gap
Discharge (fluid mechanics)
Beam plasma interactions
Crystallization
Nitrogen
Flow of gases
Particles (particulate matter)
Plasma sheaths
Quartz crystal microbalances
Fluxes
Gases
Toxicity
Lasers
Microcrystalline silicon
Light scattering
Ions
Atoms
Indium
Photons
Copper
Silicon
Ion bombardment
Electrons
Temperature
Flow rate

Physics & Astronomy

Physics

plasma jets
nanoparticles
atmospheric pressure
dust
flow velocity
electric potential
light scattering
gas temperature
ions

General

vapor deposition
hollow
silicon films
seeds
gas flow
reactors
augmentation
dilution
buffers
quartz crystals
microbalances
profiles
simulators
surface reactions

Engineering

solar cells
irradiation
quantum dots
radio frequency discharge
magnetron sputtering
electrodes
fabrication
sputtering
plasma etching
filters
ion sheaths

Chemistry and Materials

amorphous silicon
silanes
carbon
dyes
silicon
hydrogen
nitrogen
crystallization
indium
air
oxygen
liquid surfaces
composite materials

Life Sciences

toxicity
yeast
silkworms

Chemical Compounds

Plasmas
Plasma CVD
Solar cells
Chemical vapor deposition
Semiconductor quantum dots
Nanoparticles
Silanes
Deposition rates
Irradiation
Seed
Magnetron sputtering
Amorphous silicon
Hydrogen
Volume fraction
Substrates
Gases
Indium
Electrodes
Dust
Crystalline materials
Toxicity
Particles (particulate matter)
Copper
Carbon films
Energy gap
Beam plasma interactions
Sputtering
Amplitude modulation
Silicon
Aluminum Oxide
Buffer layers
Dilution
Crystallization
Lasers
Quartz crystal microbalances
Atoms
Fabrication
Indium compounds
Ions
Defect density
Fluxes
Light scattering
Nitrogen
Polymers
Film growth
Electrolytes
Carbon
Plasma sheaths
Flow of gases
Graphite