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Thermal conductivity and refractive index of hafnia-alumina nanolaminates
Nicholas T. Gabriel
,
Joseph J. Talghader
Electrical and Computer Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
30
Scopus citations
Overview
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Keyphrases
Thermal Conductivity
100%
Refractive Index
100%
Aluminum Oxide
100%
Hafnia
100%
Nanolaminates
100%
Conductivity Index
100%
Interface State Density
60%
Atomic Layer Deposition
40%
Crystallinity
20%
Room Temperature
20%
In Films
20%
Interface Resistance
20%
Continuous Film
20%
Degree of Crystallinity
20%
Index Scale
20%
Alumina Concentration
20%
Cryogenic Measurements
20%
Interface Thermal Resistance
20%
Cross-plane Thermal Conductivity
20%
Disordered Solids
20%
Diffuse Mismatch Model
20%
Depositional Cycle
20%
Minimum Thermal Conductivity Model
20%
Engineering
Refractive Index
100%
Thermal Conductivity
100%
Aluminum Oxide
100%
Refractivity
100%
Atomic Layer Deposition
40%
Crystallinity
40%
Good Agreement
20%
Thin Films
20%
Room Temperature
20%
Cryogenic Measurement
20%
Alumina Concentration
20%
Heat Resistance
20%
Material Science
Thermal Conductivity
100%
Film
100%
Refractive Index
100%
Aluminum Oxide
100%
Density
50%
Heat Resistance
16%
Thin Films
16%
Physics
Refractivity
100%
Thermal Conductivity
100%
Crystallinity
40%
Atomic Layer Epitaxy
40%
Thin Films
20%
Room Temperature
20%
Thermal Resistance
20%