We study the spatial structure of four valence neutrons in the ground state
of 8He and 18C nuclei using a core+4n model. For this purpose, we
employ a density-dependent contact interaction among the valence neutrons, and
solve the five-body Hamiltonian in the Hartree-Fock-Bogoliubov (HFB)
approximation. We show that two neutrons with the coupled spin of S=0 exhibit
a strong dineutron correlation around the surface of these nuclei, whereas the
correlation between the two dineutrons is much weaker. Our calculation
indicates that the probability of the (1p3/2)4 and [(1p3/2)2
(p1/2)2] configurations in the ground state wave function of 8He
nucleus is 34.9% and 23.7%, respectively. This is consistent with the recent
experimental finding with the 8He(p,t)6He reaction, that is, the ground
state wave function of 8He deviates significantly from the pure
(1p3/2)4 structure.Comment: 10 pages, 9 figures, 3 table