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

Chemical Compounds

Single crystals
Superconductivity
Temperature
Specific heat
Fermi surface
Iron Isotopes
Bearings (structural)
Sulfur Isotopes
Iron
Spectroscopy
Phase transitions
Spin fluctuations
Crystallization
Thermal gradients
Sulfur
Salts
Gold
Chalcogenides
Magnetization
Bosons
Superconducting materials
Electrons
Alkali Metals
Crystals
Scanning tunneling microscopy
Anisotropy
Neutron scattering
Tuning
Transport properties
Electronic structure
Chalcogens
X rays
Galvanomagnetic effects
Hall mobility
Scanning
Crystal structure
Minerals
Seebeck coefficient
Carrier concentration
Magnetic fields
Exchange interactions
Kinetic energy
Point contacts
Intercalation
Neel temperature
Magnesium Hydroxide
Physical properties
Charge carriers
Absorption spectroscopy
Charge transfer

Physics & Astronomy

General

single crystals
temperature dependence
Fermi surfaces
anisotropy
conductivity
salts
demagnetization
scanning tunneling microscopy
pressure dependence
synthesis
electron phonon interactions
crystals
interactions
shock
kinetic energy
anomalies
electric contacts
curves

Engineering

superconductivity
ferroelectricity
magnetic properties
contact resistance
remanence
charge carriers

Chemistry and Materials

Group 5A compounds
iron
iron isotopes
sulfur isotopes
pyrites
chalcogenides
crystal growth
sulfur
pyrrhotite
halides
alkali metals

Physics

specific heat
temperature gradients
critical temperature
temperature
electrons
transport properties
transition temperature
bosons
x ray absorption
hydrostatic pressure

Aerospace Sciences

spectroscopy
magnetic fields
Brillouin zones
basalt
x ray spectroscopy

Engineering & Materials Science

Single crystals
Superconductivity
Fermi surface
Temperature
Crystal growth
Phase transitions
Thermal gradients
Spectroscopy
Specific heat
Bosons
Chalcogenides
Iron
Electrons
Crystals
Scanning tunneling microscopy
Anisotropy
Bearings (structural)
Neutron scattering
Tuning
Salts
Transport properties
Electronic structure
Superconducting materials
Galvanomagnetic effects
Spin fluctuations
Sulfur
Hall mobility
Scanning
Seebeck coefficient
Carrier concentration
Point contacts
Magnetization
Intercalation
Physical properties
Charge carriers
Charge transfer
Microhardness
Lattice constants
Thermal expansion
Chemical reactions
Thermal conductivity
Crystal structure
Doping (additives)
Substitution reactions
Negative ions
Magnetic fields
Superconducting transition temperature
Sodium
Alkali metals
Scattering