JOURNAL ARTICLE

The electrical conductivity of Al2O3 under shock-compression

Hanyu LiuJohn S. TseW. J. Nellis

Year: 2015 Journal:   Scientific Reports Vol: 5 (1)Pages: 12823-12823   Publisher: Nature Portfolio

Abstract

Abstract Sapphire (Al 2 O 3 ) crystals are used below 100 GPa as anvils and windows in dynamic-compression experiments because of their transparency and high density. Above 100 GPa shock pressures, sapphire becomes opaque and electrically conducting because of shock-induced defects. Such effects prevent temperature and dc conductivity measurements of materials compressed quasi-isentropically. Opacities and electrical conductivities at ~100 GPa are non-equilibrium, rather than thermodynamic parameters. We have performed electronic structure calculations as a guide in predicting and interpreting shock experiments and possibly to discover a window up to ~200 GPa. Our calculations indicate shocked sapphire does not metallize by band overlap at ~300 GPa, as suggested previously by measured non-equilibrium data. Shock-compressed Al 2 O 3 melts to a metallic liquid at ~500 GPa and 10,000 K and its conductivity increases rapidly to ~2000 Ω −1 cm −1 at ~900 GPa. At these high shock temperatures and pressures sapphire is in thermal equilibrium. Calculated conductivity of Al 2 O 3 is similar to those measured for metallic fluid H, N, O, Rb and Cs. Despite different materials, pressures and temperatures and compression techniques, both experimental and theoretical, conductivities of all these poor metals reach a common end state typical of strong-scattering disordered materials.

Keywords:
Sapphire Materials science Compression (physics) Shock (circulatory) Opacity Electrical resistivity and conductivity Conductivity Shock front Thermal conductivity Thermodynamics Thermodynamic equilibrium Metal Scattering Shock wave Composite material Metallurgy Chemistry Optics Physics Laser Physical chemistry

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10
Cited By
0.66
FWCI (Field Weighted Citation Impact)
34
Refs
0.74
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

High-pressure geophysics and materials
Physical Sciences →  Earth and Planetary Sciences →  Geophysics
Energetic Materials and Combustion
Physical Sciences →  Engineering →  Mechanics of Materials
Crystallography and molecular interactions
Physical Sciences →  Chemistry →  Physical and Theoretical Chemistry

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