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Investigation of Alignment Effects of Neutron and Proton Pairs in High Spin States of Band Crossing for ~(159,160)Sm Isotopes Using Projected Shell Model (PSM)

机译:采用投影壳模型(PSM)对带式频带交叉频带交叉高旋转状态的对准效应调查〜(159,160)SM同位素(PSM)

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Energy spectrum of nucleus is one the important information for better recognition of nuclear force and interaction of nucleon inside of the nucleus. Energy levels of nucleus are measured by detecting gamma- ray energy spectrum when a target nucleus bombarded with a special projectile to excite it in to levels higher than ground state. On the other hand, there are several models to calculate nuclear energy levels. Solution of the Schrodinger equation by considering a suitable potential is direct method to obtain energy levels of a quantum mechanical system like nucleus. Projected shell model is a model of this type that is developed by solving the Schrodinger equation for a set of potentials along with role of spin. Band structure and yrast bands for even-even and odd-even isotopes of Samarium (~(159,160)Sm) are calculated using a Fortran code founded based on the projected shell model (PSM). Energy levels of negative and positive parity bands of ~(159)Sm and ~(160)Sm isotopes of Samarium nucleus are obtained separately for each spin. Kinetic and dynamic moments of inertias are also calculated for these isotopes. The acquired results are compared with the experimental data. The electromagnetic reduced transition probabilities, B(M1)/B(E2) the behavior of dynamic moment of inertia J~2, rotational kinetic energy and moment of inertia J~1 as a function of spin have also been investigated and proper comparison is made between the calculated results and the experimental data. The alignment phenomena of neutron-proton pairs in view of the rotational movement in high spin states has also been studied with reference to band crossing.
机译:核的能谱是更好地识别核心核力和核内核的相互作用的重要信息。当用特殊射弹时检测伽马射线能量谱来测量核的能量水平,以便将其激发到高于地面状态的水平。另一方面,有几种模型来计算核能水平。通过考虑合适的潜力来解决Schrodinger方程的解决方案是直接方法,以获得核等量子机械系统的能量水平。预计的壳模型是这种类型的模型,它是通过求解一组电位以及旋转的作用而开发的。使用基于投影壳模型(PSM)创立的Fortran代码来计算用于均匀均匀和偶数同位素的带结构和YRAST带。为每种旋转分别获得〜(159)SM和〜(160)SM和〜(160)SM同位素的负性和正奇节带的能量水平。还计算出这些同位素的动力学和动态矩阵。将获得的结果与实验数据进行比较。电磁降低的过渡概率,B(M1)/ B(E2)惯性J〜2的动态力矩,旋转动能和惯性动力和惯性动力和旋转力矩的行为也得到了调查,并且已经进行了适当的比较在计算结果和实验数据之间。考虑到高旋转状态的旋转运动的中子质对的对准现象也参考了带交叉。

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