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ret2_table.dat
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ret2_table.dat
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\begin{tabular}{lcccccc}
\hline
\hline
Model & Paper I J & Paper I D & $\log_{10}(\mathrm{J}(0.5^\circ))$& $\log_{10}(\mathrm{D}(0.5^\circ))$& $\mathcal{F}_\mathrm{J}$& $\mathcal{F}_\mathrm{D}$\\
\hline
\makecell[l]{Spherical NFW\\ Spherical Plummer}&$18.56$&$17.56$&$18.64$&$17.58$&$0.00$&$0.00$\\
\\
\makecell[l]{Oblate NFW, $p=1,\,q=0.4$\\ Oblate Plummer, $p=1,\,q=0.4$}&-&-&$18.45$&$17.62$&$-0.19$&$0.05$\\
\\
\makecell[l]{Prolate NFW, $p=1,\,q=2.5$\\ Prolate Plummer, $p=1,\,q=2.5$}&-&-&$19.05$&$17.67$&$0.40$&$0.09$\\
\\
\makecell[l]{Near-prolate NFW, $p=0.5$, $q=0.4$\\ Near-prolate cuspy Plummer\\\quad$\alpha_\star=2,\,\beta_\star=5,\,\gamma_\star=1,\,p=0.4,\,q=0.38$}&-&-&$19.01$&$17.78$&$0.37$&$0.20$\\
\\
\makecell[l]{Prolate cored DM\\\quad$\alpha_\mathrm{DM}=1,\,\beta_\mathrm{DM}=4,\,\gamma_\mathrm{DM}=0,\,p=1,\,q=2.5$\\ Prolate Plummer, $p=1,\,q=2.5$}&-&-&$18.90$&$17.66$&$0.26$&$0.08$\\
\\
\hline
\end{tabular}