\vspace{0.2cm}
- \begin{center}
- \includegraphics[height=13cm]{dofs.pdf}
- \end{center}
+ %\begin{center}
+ %\includegraphics[height=13cm]{dofs.pdf}
+ %\end{center}
\vspace{-24pt}
\end{minipage}
\begin{minipage}[b]{350mm}
\begin{center}
- \includegraphics[height=20cm]{phasediagram.pdf}
+ \includegraphics[height=25cm]{phasediagram.pdf}
\cite{PhysRevLett.111.141601}
\end{center}
%%%%%%%%%%%%%%%%%%%%%%% MASS CORRELATORS %%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
-\large \centering{\textcolor{cyan}{\LARGE\sf Mass correlators}}
+\large \centering{\textcolor{cyan}{\LARGE\sf Mass correlators in the confined phase}}
\vspace{1.0cm}
\begin{minipage}[b]{350mm}
+ For the fundamental correlators $F_1$ and $F_2$, as expected, we see no plateaus. The masses of the bound states $U_1$ and $U_2$ are split because we set the effective masses of the two flavours to different values.
+
\begin{center}
\includegraphics[height=28cm]{mass.pdf}
\end{center}
\begin{minipage}[b]{350mm}
+ We here show different observables as function of $\mu$. The dotted lines show the masses $U_1$ and $U_1$ determined from the plots above.
+
\begin{center}
- %\includegraphics[height=28cm]{mass.pdf}
+ \includegraphics[height=35cm]{finmu_840.pdf}
\end{center}
\vspace{-24pt}