\begin{document}$ N = 50 $\end{document} and 82 shell closures are clearly reproduced in nuclear charge radii. The inverted parabolic-like behaviors of rms charge radii can also be described remarkably well between two neutron magic numbers, namely \begin{document}$ N = 28 $\end{document} to 50 for copper isotopes and \begin{document}$ N = 50 $\end{document} to 82 for indium isotopes. This implies that the np-correlations play an indispensable role in quantitatively determining the fine structures of nuclear charge radii along odd-Z isotopic chains. Also, our conclusions have almost no dependence on the effective forces."> Evolution of nuclear charge radii in copper and indium isotopes -
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