论文标题
$ n = 32 $和$ n = 34 $ shell差距的新研究是ti和v的第一个高精度群众质量测量值
A new study of the $N=32$ and $N=34$ shell gap for Ti and V by the first high-precision MRTOF mass measurements at BigRIPS-SLOWRI
论文作者
论文摘要
使用高精确的多回能时间技术确定了$^{55} $ sc,$^{56,58} $ ti和$^{56-59} $ V的原子质量。放射性同位素是在Riken的Ribf设施中生产的,并运送到了新型设计的燃气电池和多反射系统(ZD MRTOF),该系统最近在BigRips分离器后的Zerodegree光谱仪下进行了委托。对于$^{56,58} $ ti和$^{56-59} $ v,大量不确定性已减少到$ 10 \,\ mathrm {kev} $的订单,在$ n = 34 $ shell ti and ti和v iSotopes y y ti Prifd ti hight high them ti $ ti and ti use ti中均散发出了新的光,并为58 $ ti的shell效果} {58 $^{59} $ v。有了新的精度,我们揭示了$ n = 34 $经验的Ti和V的经验两中壳差距的不存在,以及高于占用的$νp_{3/2} $ orbit的增强的能量差距被确定为CA的特征。我们执行新的Monte Carlo Shell模型计算,包括$νd_{5/2} $和$νg_{9/2} $ ORBITS,并将结果与常规的Shell模型计算进行比较,该计算排除了$νg_{9/2} $和$νd_{5/2} $或BITS。比较表明,Ti的外壳差距减少与外部两个价中子的较高轨道的部分占用有关,$ n = 34 $。
The atomic masses of $^{55}$Sc, $^{56,58}$Ti, and $^{56-59}$V have been determined using the high-precision multi-reflection time-of-flight technique. The radioisotopes have been produced at RIKEN's RIBF facility and delivered to the novel designed gas cell and multi-reflection system (ZD MRTOF), which has been recently commissioned downstream of the ZeroDegree spectrometer following the BigRIPS separator. For $^{56,58}$Ti and $^{56-59}$V the mass uncertainties have been reduced down to the order of $10\,\mathrm{keV}$, shedding new light on the $N=34$ shell effect in Ti and V isotopes by the first high-precision mass measurements of the critical species $^{58}$Ti and $^{59}$V. With the new precision achieved, we reveal the non-existence of the $N=34$ empirical two-neutron shell gaps for Ti and V, and the enhanced energy gap above the occupied $νp_{3/2}$ orbit is identified as a feature unique to Ca. We perform new Monte Carlo shell model calculations including the $νd_{5/2}$ and $νg_{9/2}$ orbits and compare the results with conventional shell model calculations, which exclude the $νg_{9/2}$ and the $νd_{5/2}$ orbits. The comparison indicates that the shell gap reduction in Ti is related to a partial occupation of the higher orbitals for the outer two valence neutrons at $N=34$.