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author | Jaron Kent-Dobias <jaron@kent-dobias.com> | 2020-05-19 12:53:10 -0400 |
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committer | Jaron Kent-Dobias <jaron@kent-dobias.com> | 2020-05-19 12:53:10 -0400 |
commit | cd58ca342fa989c3109f85cb678bf9144a4d7291 (patch) | |
tree | eada324a5b23e96e2c7ff74c10951a42ed1f8f63 /main.tex | |
parent | 587a8223b47d1c7b21ff8ddea3cb6e4193d99a12 (diff) | |
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More referee response changes.
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1 files changed, 3 insertions, 3 deletions
@@ -476,9 +476,9 @@ corresponding modulus. shows the location of the \ho\ phase. (a) $\Btg$ modulus data and a fit to the standard form.\cite{Varshni_1970} (b) $\Bog$ modulus data and a fit to \eqref{eq:static_modulus} (magenta, dashed) and a fit to \eqref{eq:C0} (black, solid). The fit gives - $C^0_\Bog\simeq\big[71-(0.010\,\K^{-1})T\big]\,\GPa$, $D_\perp - q_*^4/b^2\simeq0.16\,\GPa^{-1}$, and - $a/b^2\simeq6.1\times10^{-4}\,\GPa^{-1}\,\K^{-1}$. Addition of a quadratic + $C^0_\Bog\simeq\big[73-(0.012\,\K^{-1})T\big]\,\GPa$, $D_\perp + q_*^4/b^2\simeq0.12\,\GPa^{-1}$, and + $a/b^2\simeq3.7\times10^{-4}\,\GPa^{-1}\,\K^{-1}$. Addition of a quadratic term in $C^0_\Bog$ was here not needed for the fit.\cite{Varshni_1970} (c) $\Bog$ modulus data and the fit of the \emph{bare} $\Bog$ modulus. (d) $\Bog$ modulus data and the fits transformed by |