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首页> 外文期刊>International journal of modern physics, E. Nuclear physics >Application of classical formulations of quantum mechanical time-dependent variational principles to the shell and collective models
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Application of classical formulations of quantum mechanical time-dependent variational principles to the shell and collective models

机译:量子力学时间相关变分原理的经典公式在壳模型和集合模型中的应用

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The pairing off of two-dimensional vortices with opposite orientation and constant strength has its analog in nuclear pairing forces, where the constant vortex strength corresponds to the projection of the angular momentum on the symmetry axis. This occurs as a second-order phase transition for a critical value of the interaction strength. Interactions leading to configurational mixing are analyzed in terms of Euler's equation of an asymmetrical top in the strong coupling limit. The dynamics of pairing forces, configurational mixing, and deformation alignment, due to quadrupole forces and the coupling of the total angular momentum to the intrinsic spin of the odd nucleon, are analyzed by imposing constraints on the coefficients of a quadratic rotational Hamiltonian. Processes leading to deformation alignment give rise to precessional motion of the total angular momentum about the nuclear symmetry axis.
机译:具有相反方向和恒定强度的二维涡旋的配对在核对力中具有其类似物,其中恒定涡旋强度对应于角动量在对称轴上的投影。对于相互作用强度的临界值,这是作为二阶相变发生的。根据强耦合极限中不对称顶部的欧拉方程,分析了导致构型混合的相互作用。通过对二次旋转哈密顿量的系数施加约束,分析了由于四极力以及总角动量与奇核子的本征自旋的耦合而产生的配对力,结构混合和变形排列的动力学。导致变形对准的过程导致总角动量绕核对称轴进动。

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