Department of Physics, The University of Hong Kong, Pokfulam, 999077, Hong Kong.
RIKEN Nishina Center, Wako, Saitama 351-0198, Japan.
Phys Rev Lett. 2019 Oct 4;123(14):142501. doi: 10.1103/PhysRevLett.123.142501.
Exclusive cross sections and momentum distributions have been measured for quasifree one-neutron knockout reactions from a ^{54}Ca beam striking on a liquid hydrogen target at ∼200 MeV/u. A significantly larger cross section to the p_{3/2} state compared to the f_{5/2} state observed in the excitation of ^{53}Ca provides direct evidence for the nature of the N=34 shell closure. This finding corroborates the arising of a new shell closure in neutron-rich calcium isotopes. The distorted-wave impulse approximation reaction formalism with shell model calculations using the effective GXPF1Bs interaction and ab initio calculations concur our experimental findings. Obtained transverse and parallel momentum distributions demonstrate the sensitivity of quasifree one-neutron knockout in inverse kinematics on a thick liquid hydrogen target with the reaction vertex reconstructed to final state spin-parity assignments.
已针对在 ∼200 MeV/u 的速度下从 ^{54}Ca 束撞击液氢靶上的准自由单中子敲出反应,测量了独特的横截和动量分布。在激发 ^{53}Ca 时,与 f_{5/2} 态相比,p_{3/2} 态的截面显著增大,这为 N=34 壳层闭壳性提供了直接证据。这一发现证实了富含中子的钙同位素中出现了新的壳层闭壳性。用有效 GXPF1Bs 相互作用的壳模型计算和从头计算的扭曲波冲量近似反应形式与我们的实验结果一致。获得的横向和纵向动量分布表明,在反应顶点重建到最终态自旋-宇称分配的情况下,使用厚液氢靶进行逆动力学的准自由单中子敲出对反应非常敏感。