Gd158中(p, t)反应激发态的高分辨率研究

A. Levon, D. Bucurescu, C. Costache, T. Faestermann, R. Hertenberger, A. Ionescu, R. Lica, A. Magner, C. Mihai, R. Mihai, C. Nita, S. Pascu, K. P. Shevchenko, A. Shevchuk, A. Turturica, H. Wirth
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引用次数: 1

摘要

利用慕尼黑串联加速器上的Q3D谱仪,用(p,t)反应对形变核158Gd的激发谱进行了高能量分辨率的研究。在高达4.3 MeV的海同光谱中测量了200多个激发态的角分布。通过将实验角分布与CHUCK程序计算的角分布进行比较,确定了36个0+激发态(暂定5个)。更高自旋能级的分配如下:2+态95,4+态64,6+态14,负宇称态约20。选择可视为旋转带的状态序列。对这些波段定义的转动惯量进行了分析。形变核中激发态的高数量,接近于一个完整的能级方案,构成了检验核结构模型的一个很好的基础。具有相同自旋宇称的态的大集合为统计分析提供了独特的机会。对0+,2+和4+状态序列,所有K值和角动量的确定的投影K进行了这样的分析。得到的数据可能表明有K对称性破缺。实验数据与相互作用玻色子模型(IBM)计算使用spdf版本的模型进行比较。计算了低洼能级的能量、第一能带的跃迁概率和0+态的转移强度分布,并与实验进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-resolution study of excited states in Gd158 with the (p, t) reaction
The excitation spectra in the deformed nucleus 158Gd have been studied with high energy resolution by means of the (p,t) reaction using the Q3D spectrograph facility at the Munich Tandem accelerator. The angular distributions of tritons were measured for more than 200 excited states seen in the triton spectra up to 4.3 MeV. A number of 36 excited 0+ states (five tentative), have been assigned by comparison of experimental angular distributions with the calculated ones using the CHUCK code. Assignments for levels with higher spins are the following: 95 for 2+ states, 64 for 4+ states, 14 for 6+ states and about 20 for negative parity states. Sequences of states which can be treated as rotational bands are selected. The analysis of the moments of inertia defined for these bands is carried out. This high number of excited states in a deformed nucleus, close to a complete level scheme, constitutes a very good ground to check models of nuclear structure. The large ensembles of states with the same spin-parity offer unique opportunities for statistical analysis. Such an analysis for the 0+, 2+ and 4+ states sequences, for all K-values and for well-determined projections K of the angular momentum is performed. The obtained data may indicate on a K symmetry breaking. Experimental data are compared with interacting boson model (IBM) calculations using the spdf version of the model. The energies of the low-lying levels, the transition probabilities in the first bands and the distribution in transfer intensity of the 0+ states are calculated and compared with experiment.
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