Department of Physics and Center of Mathematics for Applications, University of Oslo, N-0316 Oslo, Norway.
Phys Rev Lett. 2011 Jul 15;107(3):032501. doi: 10.1103/PhysRevLett.107.032501. Epub 2011 Jul 11.
We present microscopic coupled-cluster calculations of the spectroscopic factors for proton removal from the closed-shell oxygen isotopes (14,16,22,24,28)O with a chiral nucleon-nucleon interaction at next-to-next-to-next-to-leading order. We include coupling-to-continuum degrees of freedom by using a Hartree-Fock basis built from a Woods-Saxon single-particle basis. This basis treats bound and continuum states on an equal footing. We find a significant quenching of spectroscopic factors in the neutron-rich oxygen isotopes, pointing to enhanced many-body correlations induced by strong coupling to the scattering continuum above the neutron emission thresholds.
我们呈现了用手征核子-核子相互作用在次领头阶(next-to-next-to-next-to-leading order)下对闭壳层氧同位素(14,16,22,24,28)O 中质子转移的光谱因子进行微观耦合簇计算。我们通过使用由 Woods-Saxon 单粒子基构建的 Hartree-Fock 基来包含耦合到连续态的自由度。这个基将束缚态和连续态平等对待。我们发现,在富含中子的氧同位素中,光谱因子显著猝灭,这表明在中子发射阈之上与散射连续态的强耦合引起了增强的多体关联。