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

Engineering & Materials Science

Magnetron sputtering
Transistors
Magnetic fields
Threshold voltage
Electric potential
Gallium nitride
Diamond like carbon films
Hydrogen
Reactive sputtering
Oxygen
Deposition rates
Heterojunctions
Ion beams
Hysteresis
Sputtering
Plasmas
Mirrors
Carbon
Substrates
Electric breakdown
Zirconium alloys
Thin films
Temperature
Ultrathin films
Ellipsometry
Spectrophotometry
Liquids
Flow rate
Polishing
Doping (additives)
Partial pressure
Oxide films
Hardness
Cleaning
Coatings
Energy gap
Surface roughness
Laser ablation
Acoustic impedance
Pulsed lasers
Metals
Carbon films
Sheet resistance
Auger electron spectroscopy
Semiconductor devices
Evaporation
Optoelectronic devices
Transparency
Atoms
Argon

Physics & Astronomy

Engineering

magnetron sputtering
coatings
magnetrons
transistors
polishing
sputtering
electrical faults

General

installing
power supplies
atmospheres
products
purity
cleaning
zirconium alloys
mirrors
alloying
surface layers
discontinuity
abrasives
thin films
corrosion
dipoles

Physics

threshold voltage
high voltages
friction
ion beams
ions
electric potential
refractivity
energy spectra
roughness

Chemistry and Materials

gallium nitrides
argon
silicon nitrides
oxygen
hydrogen
liquids
hardness
anatase
rutile
mechanical properties
carbon
silicon
adhesion
wear resistance
corrosion resistance
gas mixtures

Aerospace Sciences

magnetic field configurations
spectrophotometry
magnetic fields

Chemical Compounds

Magnetron sputtering
Hydrogen
Transistors
Threshold voltage
Reactive sputtering
Electric potential
Heterojunctions
Ion beams
Oxygen
Sputtering
Substrates
Electric breakdown
Zirconium alloys
Temperature
Liquids
Polishing
Metals
Doping (additives)
Magnetic fields
Oxide films
Cleaning
Surface roughness
Sheet resistance
Semiconductor devices
Deposition rates
Optoelectronic devices
Transparency
Atoms
Phase composition
Experiments
Optical band gaps
Film growth