Using an extended parity doublet model with the hidden local symmetry, we study the properties of nuclei in the mean field approximation to see if the parity doublet model could reproduce nuclear properties and also to estimate the value of the chiral invariant nucleon mass m0 preferred by nuclear structure. We first determined our model parameters using the inputs from free space and from nuclear matter properties. Then, we study some basic nuclear properties such as the nuclear binding energy with several different choices of the chiral invariant mass. We observe that our results, especially the nuclear binding energy, approach the experimental values as m0 is increased until m0 = 700 MeV and start to deviate more from the experiments afterwards with m0 larger than m0 = 700 MeV, which may imply that m0 = 700 MeV is preferred by some nuclear properties.
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