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- W2013014054 abstract "Extended x-ray absorption fine structure (EXAFS), using a laser-imploded target as a source, can yield the properties of laser-shocked metals on a nanosecond time scale. EXAFS measurements of vanadium shocked to $ensuremath{sim}0.4text{ }mathrm{M}mathrm{b}mathrm{a}mathrm{r}$ yield the compression and temperature in good agreement with hydrodynamic simulations and shock-speed measurements. In laser-shocked titanium at the same pressure, the EXAPS modulation damping is much higher than is warranted by the predicted temperature increase. This is shown to be due to the $ensuremath{alpha}mathrm{text{ensuremath{-}}}mathrm{T}mathrm{i}$ to $ensuremath{omega}mathrm{text{ensuremath{-}}}mathrm{T}mathrm{i}$ crystal phase transformation, known to occur below $ensuremath{sim}0.1text{ }mathrm{M}mathrm{b}mathrm{a}mathrm{r}$ for slower shock waves." @default.
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- W2013014054 date "2004-03-05" @default.
- W2013014054 modified "2023-09-23" @default.
- W2013014054 title "Extended X-Ray Absorption Fine Structure Measurements of Laser-Shocked V and Ti and Crystal Phase Transformation in Ti" @default.
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- W2013014054 doi "https://doi.org/10.1103/physrevlett.92.095504" @default.
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