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\begin{center}
{\large \bf PROPERTIES OF RHO AND ETA MESONS}\\[2mm]
{\large \bf IN NUCLEAR MATTER}\\[5mm]
M.~HERRMANN, CHR.~SAUERMANN, B.~L.~FRIMAN and W.~N\"ORENBERG \\[5mm]
{\small \it Gesellschaft f\"ur Schwerionenforschung (GSI) \\
Postfach 110552, D-64220 Darmstadt, Germany \\[8mm] }
\end{center}
\begin{abstract}\noindent
The properties of $\rho$- and $\eta$-mesons in nuclear matter are
studied within the scope of hadronic models. Unknown \ldots of the
two branches survives at zero momentum.
\end{abstract}
\section{Introduction}
A main objective of heavy-ion collision experiments at intermediate
energies is to determine the properties of nuclear matter at \ldots
\section{The $\rho$-Meson in Nuclear Matter and $e^+e^-$ Production}
In the first calculations \cite{GK,KP} of dilepton production in
nuclear matter, \ldots
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{\centerline{\footnotesize
Fig.~1: Spectral function (left) of
the $\rho$-meson as a function \dots}}
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\dots where the spectral function in one-loop approximation \dots
\subsection{The $\rho$-Meson in Vacuum}
Our Lagrange density for the photons, the neutral $\rho$-mesons and
the charged $\pi$-mesons reads
\begin{equation}
{\cal L} = \dots\dots,
\end{equation}
where \ldots to the isovector P-wave phase shifts for $\pi \pi$
scattering (see Fig.~2).
\begin{thebibliography}{99}
\itemsep=0cm
\bibitem{GK}
C.~Gale and J.~Kapusta, Phys.~Rev.~{\bf C35} (1987) 2107;
\bibitem{KP}
C.L.~Korpa and S.~Pratt, Phys.~Rev.~Lett.~{\bf 64} (1990) 1502.
\end{thebibliography}
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