Keyphrases
Thermal Conductivity
100%
Swift Heavy Ions
100%
Thermal Damage
100%
Metal Oxide
100%
Depth-resolved
100%
Irradiated Metals
100%
Thermal Transport
75%
Magnesium Oxide
75%
Y3Al5O12
75%
Yttrium Aluminum Garnet
75%
Zinc Oxide
50%
Aluminum Oxide
50%
Magnesium-zinc-yttrium
50%
Microstructure Evolution
50%
Oxide-oxide
50%
Analytical Model
25%
Depth Profiling
25%
Time-domain Thermoreflectance
25%
Depth-dependent
25%
Subsurface Damage
25%
Meter Scale
25%
Strong Dependence
25%
Sapphire
25%
Oxide Materials
25%
Nuclear Reactor
25%
Amorphization
25%
Low Conductivity
25%
Defect Concentration
25%
Ion Track
25%
Thermoreflectance Method
25%
Xe Ion
25%
Thermal Wave
25%
Hillock Formation
25%
Crystalline Oxides
25%
Damage Profile
25%
Ion-induced Defects
25%
Thermal Conductivity Degradation
25%
Oxide Ceramics
25%
Single-crystalline
25%
INIS
damage
100%
metals
100%
depth
100%
thermal conductivity
100%
oxides
100%
irradiation
100%
heavy ions
100%
ions
75%
transport
75%
magnesium oxides
75%
yttrium aluminium garnets
75%
surfaces
50%
defects
50%
zinc oxides
50%
microstructure
50%
applications
25%
tracks
25%
concentration
25%
recovery
25%
MeV range
25%
ceramics
25%
meters
25%
nuclear reactors
25%
saturation
25%
point defects
25%
sapphire
25%
monocrystals
25%
amorphous state
25%
xenon ions
25%
Material Science
Thermal Conductivity
100%
Metal Oxide
100%
Aluminum
75%
Garnet
75%
Magnesium Oxide
75%
Yttrium
75%
Zinc Oxide
50%
Al2O3
50%
Oxide Compound
25%
Crystalline Material
25%
Point Defect
25%
Sapphire
25%
Surface Damage
25%
Amorphization
25%
Oxide Ceramics
25%
Engineering
Thermal Conductivity
100%
Yttrium-Aluminum-Garnet
75%
Defects
50%
Microstructure Evolution
50%
Promising Candidate
25%
Subsurface
25%
Nuclear Reactor
25%
Time Domain
25%
Induced Defect
25%
Analytical Model
25%