Department of Applied Physics

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Physics & Astronomy

Chemistry and Materials

atomic layer epitaxy
polymers
gases
silicon

Engineering

quantum dots
nanowires
solar cells
Thomson scattering

Physics

atmospheric pressure
photonics
electrons
plasma jets
temperature
ions

General

simulation
lasers
fluids
passivity
microwaves
energy
thin films
pulses
interactions

Aerospace Sciences

cavities
turbulence

Chemical Compounds

Atomic layer deposition
Polymers
Plasmas
Nanowires
Solar cells
Silicon
Electrons
Semiconductor quantum dots
Thin films
Temperature
Gases
Substrates
Heterojunctions
Water
Semiconductor materials
Atmospheric pressure
Nanoparticles
Fullerenes
Energy gap
Metals
Conversion efficiency
Passivation
Ions
Hydrogen
Semiconducting organic compounds

Engineering & Materials Science

Plasmas
Atomic layer deposition
Nanowires
Solar cells
Polymers
Electrons
Temperature
Semiconductor quantum dots
Thin films
Substrates
Semiconductor materials
Atmospheric pressure
Silicon
Passivation
Heterojunctions
Nanoparticles
Gases
Experiments
Excitons
Energy gap
Fluids
Conversion efficiency
Photons
Semiconducting organic compounds
Ions