Mixed symmetry states in 96Mo and 98Ru isotones in the framework of interacting boson model

Heiyam Najy Hady, Ruqaya Talib Kadhim
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Abstract

The software package IBM code for interacting boson model-1 and Neutron Proton Boson NPBOS code for interacting boson model-2 have been used to calculate energy levels for, for by estimating a set of parameters which are used to predict the behavior of even-even isotones within the current scope of work there is clear competition between the two parameters (ε and a2) in isotones, as an inverse relationship. This means that vibrational qualities are continuous mixed with the rotational properties. In interacting boson model-2 parameters(ε, κ, χπ and χν) have been shown similarity with interacting boson model-1 expected. The Majorana parameter effect (ζ2) on the calculated excitation energy level for isotones has been accomplished by vary the ζ2 around the optimum-matches to practical data. The effect of increasing ζ2 on mixing symmetry states is the same in all isotones but different from state to another, we find the state J+ = 23+ was the lowest mixing symmetry states still approximately constant in the all. In that time,isotones have 1+, 3+1, 5+1 mixed symmetry states, rapidly increasing with increasing ζ2. The results of the calculated energy levels were in acceptable agreement with the experimental data. There is no pure vibrational property of these isotones
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相互作用玻色子模型框架下96Mo和98Ru等色的混合对称态
用于相互作用玻色子模型-1的软件包IBM代码和用于相互作用玻色子模型-2的中子质子玻色子NPBOS代码已被用于计算能级,因为通过估计一组用于预测偶偶等色的行为的参数,在当前的工作范围内,等色中的两个参数(ε和a2)之间存在明显的竞争关系,作为反比关系。这意味着振动特性与旋转特性是连续混合的。在相互作用玻色子模型-2中,参数(ε, κ, χπ和χν)与预期的相互作用玻色子模型-1相似。通过改变与实际数据最优匹配点周围的ζ2,实现了等音激发能级计算中的Majorana参数效应(ζ2)。增加ζ2对混合对称态的影响在所有等音中都是相同的,但不同的状态不同,我们发现状态J+ = 23+是最低的混合对称态,在所有等音中仍然近似恒定。在这段时间内,同色图具有1+、3+1、5+1混合对称态,随着ζ2的增加而迅速增加。计算结果与实验数据吻合较好。这些同色线没有纯粹的振动性质
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