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A high pressure Brillouin scattering study of vitreous boron oxide up to 57GPa
Jason Nicholas
, Stanislav Sinogeikin
, John Kieffer
,
Jay Bass
Earth Science and Environmental Change
Research output
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Contribution to journal
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Conference article
›
peer-review
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Keyphrases
High Pressure
100%
Sound Velocity
100%
Brillouin Scattering
100%
Boron Oxide
100%
Glass Properties
33%
Room Temperature
33%
Path Dependence
33%
Poisson's Ratio
33%
Polymorph
33%
First Cycle
33%
Longitudinal Velocity
33%
Shear Velocity
33%
Index of Refraction
33%
Sharp Transition
33%
Ambient Pressure
33%
Decompression
33%
Glass Structure
33%
Brillouin Spectroscopy
33%
Original Structure
33%
Compression-decompression
33%
Initial Compression
33%
Engineering
Sound Velocity
100%
Brillouin Zone
100%
Decompression
66%
Room Temperature
33%
Poisson Ratio
33%
Longitudinal Velocity
33%
Index of Refraction
33%
Ambient Pressure
33%
Original Structure
33%
Glass Structure
33%
Material Science
Oxide Compound
100%
Boron
100%
Poisson Ratio
50%
Glass Property
50%