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

Iimura, S., Rosenbusch, M., Takamine, A., Tsunoda, Y., Wada, M., Chen, S., Hou, D. S., Xian, W., Ishiyama, H., Yan, S., Schury, P., Crawford, H., Doornenbal, P., Hirayama, Y., Ito, Y., Kimura, S., Koiwai, T., Kojima, T. M., Koura, H., Lee, J., Liu, J., Michimasa, S., Miyatake, H., Moon, J. Y., Nishimura, S., Naimi, S., Niwase, T., Odahara, A., Otsuka, T., Paschalis, S., Petri, M., Shimizu, N., Sonoda, T., Suzuki, D., Watanabe, Y. X., Wimmer, K., Wollnik, H.

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 $N=34$.

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