首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >RELATIVISTIC MEAN-FIELD DESCRIPTION OF SMALL-AMPLITUDE AND LARGE-AMPLITUDE COLLECTIVE MOTION IN NUCLEI
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RELATIVISTIC MEAN-FIELD DESCRIPTION OF SMALL-AMPLITUDE AND LARGE-AMPLITUDE COLLECTIVE MOTION IN NUCLEI

机译:核小幅度和大幅度集体运动的相对论均值描述

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摘要

The dynamics of collective motion in nuclei is described in the framework of time-dependent relativistic mean-field theory. For a given set of initial conditions (stationary solution for the ground state, initial velocities of the proton and neutron densities, initial deformations), the model describes the time evolution of the nuclear system. In the limit of small-amplitude motion we investigate isovector dipole, isoscalar quadrupole, and isovector quadrupole oscillations. Model calculations are performed for the nuclei O-16, Ca-40, Ca-48 and compared with experimental data on energies and widths of giant resonances. For Ca-48 we also investigate the dynamics of large-amplitude isovector dipole motion. With increasing excitation energy the motion becomes strongly anharmonic and clusters of particles evaporate from the surface of the nucleus. At the highest energies we find a rapid dissociation of the nucleus in proton and neutron clusters. [References: 41]
机译:在时变相对论平均场理论的框架内描述了原子核中集体运动的动力学。对于给定的一组初始条件(基态的静态解,质子和中子密度的初始速度,初始变形),该模型描述了核系统的时间演化。在小振幅运动的极限下,我们研究了等矢量偶极,等量四极和等矢量四极振荡。对O-16,Ca-40,Ca-48原子核进行了模型计算,并与关于能量和巨共振宽度的实验数据进行了比较。对于Ca-48,我们还研究了大振幅等矢量偶极子运动的动力学。随着激发能量的增加,运动变得非常不和谐,并且粒子团从原子核表面蒸发。在最高能量下,我们发现质子和中子簇中的原子核迅速解离。 [参考:41]

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