Dipole Strength Distribution of 8 He and Decay Characteristics
The weak binding and spatially extended neutron densities characteristic of drip-line nuclei give rise to a distinctive low-energy dipole response. The drip-line nucleus 8 He is the most neutron-rich bound nucleus with a mass-to-charge ratio of π΄/π = 4. We measure the dipole response of 8 He, including for the first time the four-neutron decay channel. A total dipole strength of βπ΅β‘(πΈβ’1)(πΈ*< 15 MeV) = 0.95β’(16)β’π 2 fm 2 and a dipole polarizability of πΌ π· = 0.61β’(1) fm 3 are extracted from the differential Coulomb-excitation cross section and compared to state-of-the-art theoretical calculations employing coupled cluster and three-body approaches. We find that the dipole continuum is dominated, even at high excitation energies well above the 4β’π decay threshold, by two-neutron emission, pointing to a 6 He + 2β’π structure of the excited dipole mode. No indication was found for a 4β’π final-state correlation, while pronounced πβ’π and 6 Heβπ final-state correlations are apparent.