\begin{document}$ J^{\pi}(T)=3^{+}(0) $\end{document} state was measured to be enhanced in an isolated \begin{document}$ ^{6} $\end{document}Li nucleus compared to the same reduced state in a \begin{document}$ ^{6} $\end{document}Li cluster. This difference demonstrates a nuclear medium modification of the tensor force, which is sensitively probed by the \begin{document}$ T=0 $\end{document} channel. In contrast, the \begin{document}$ J^{\pi}(T)=0^{+}(1) $\end{document} state (\begin{document}$ T=1 $\end{document}) was found to have approximately equal excitation strength in both \begin{document}$ ^{6} $\end{document}Li systems. We interpret this tensor force modification as a consequence of density saturation within a many-body interaction framework."> Nuclear medium effects for modification of tensor interaction -
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