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首页> 外文期刊>International journal of modern physics, E. Nuclear physics >Two-oscillator basis expansion for the solution of relativistic mean field equations
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Two-oscillator basis expansion for the solution of relativistic mean field equations

机译:相对论平均场方程解的两振动基展开

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In the relativistic mean field (RMF) calculations usually the basis expansion method is employed. For this one uses single harmonic oscillator (HO) basis functions. A proper description of the ground state nuclear properties of spherical nuclei requires a large (around 20) number of major oscillator shells in the expansion. In halo nuclei where the nucleons have extended spatial distributions, the use of single HO basis for the expansion is inadequate for the correct description of the nuclear properties, especially that of the surface region. In order to rectify these inadequacies, in the present work an orthonormal basis composed of two HO basis functions having different sizes is proposed. It has been shown that for a typical case of (A = 11) the ground state constructed using two-HO wave functions extends much beyond the second state or even third excited state of the single HO wave function. To demonstrate its usefulness explicit numerical RMF calculations have been carried out using this procedure for a set of representative spherical nuclei ranging from O-16 to Pb-208. The binding energies, charge radii and density distributions have been correctly reproduced in the present scheme using a much smaller number of major shells (around 10) in the expansion. [References: 34]
机译:在相对论平均场(RMF)计算中,通常采用基础扩展方法。为此,使用单谐波振荡器(HO)基本功能。球形核基态核特性的正确描述需要在膨胀中使用大量(约20个)主振荡器壳。在核子具有扩展的空间分布的晕核中,使用单一的HO基础进行扩展不足以正确描述核特性,尤其是表面区域的特性。为了纠正这些不足,在本工作中,提出了由具有不同大小的两个HO基函数组成的正交基。已经表明,对于典型的(A = 11)情况,使用两个HO波函数构造的基态远远超出了单个HO波函数的第二态甚至第三激发态。为了证明其有用性,已使用此程序对一组范围从O-16到Pb-208的代表性球形核进行了明确的RMF计算。结合能,电荷半径和密度分布已在本方案中使用膨胀中少得多的主壳(大约10个)正确地再现了。 [参考:34]

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