Abstract
Liquid silica at high pressure and temperature is shown to undergo significant structural modifications and profound changes in its electronic properties. Temperature measurements on shock waves in silica at 70-1000 GPa indicate that the specific heat of liquid SiO2 rises well above the Dulong-Petit limit, exhibiting a broad peak with temperature that is attributable to the growing structural disorder caused by bond breaking in the melt. The simultaneous sharp rise in optical reflectivity of liquid SiO2 indicates that such dissociation causes the electrical and therefore thermal conductivities of silica to attain metalliclike values of 1-5×105S/m and 24-600W/m•K, respectively. © 2006 The American Physical Society.
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CITATION STYLE
Hicks, D. G., Boehly, T. R., Eggert, J. H., Miller, J. E., Celliers, P. M., & Collins, G. W. (2006). Dissociation of liquid silica at high pressures and temperatures. Physical Review Letters, 97(2). https://doi.org/10.1103/PhysRevLett.97.025502
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