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Connections between the Dynamical Symmetries in the Microscopic Shell Model

机译:显微镜壳模型中动态对称之间的连接

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The dynamical symmetries of the microscopic shell model appear as the limiting cases of a symmetry adapted Pairing-Plus-Quadrupole Model/PQM/, with a Hamiltonian containing isoscalar and isovector pairing and quadrupole interactions. We establish a correspondence between each of the three types of pairing bases and Elliott's SU(3) basis, that describes collective rotation of nuclear systems with quadrupole deformation. It is derived from their complementarity to the same LS coupling chain of the shell model number conserving algebra. The probability distribution of the S U(3) basis states within the pairing eigenstates is also obtained through a numerical diagonalization of the PQM Hamiltonian in each limit. We introduce control parameters, which define the phase diagram of the model and determine the role of each term of the Hamiltonian in the correct reproduction of the experimental data for the considered nuclei.
机译:微观壳模型的动态对称显示为对称性适应配对加 - 四极其型号/ PQM /,具有汉密尔顿和ISOVORECTOR配对和四极相互作用的汉密尔顿人的限制案例。我们建立了三种类型的配对基础和艾尔·苏(3)中的每一个之间的对应关系,该基础上描述了具有四极性变形的核系统的集体旋转。它源自它们的互补性与壳模型号保守代数的相同LS耦合链。通过每个限制中PQM Hamiltonian的数值对角化也可以获得配对特征栓塞内的S U(3)基态的概率分布。我们介绍了控制参数,该参数定义了模型的相图,并确定了汉密尔顿人的每个术语在正确的核核的实验数据的正确再现中的作用。

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