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首页> 外文期刊>Physical review, C >Shell evolution above Z,N = 50 within Skyrme density functional theory: The impact of deformation and tensor interactions
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Shell evolution above Z,N = 50 within Skyrme density functional theory: The impact of deformation and tensor interactions

机译:Zyrme密度函数理论中Z,n = 50的壳进化:变形和张量相互作用的影响

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摘要

Background: Recent years have seen considerable effort in associating the shell evolution (SE) for a chain of isotones or isotopes with the underlying nuclear interactions. In particular, it has been fairly well established that the tensor part of the Skyrme interaction is indispensable for understanding certain SE above Z,N = 50 shell closures, as a function of nucleon numbers. Purpose: The purpose of the present work is twofold: (1) to study the effect of deformation due to blocking on the SE above Z,N = 50 shell closures and (2) to examine the optimal parametrizations in the tensor part which gives a proper description of the SE above Z,N = 50 shell closures. Methods: I use the Skyrme-Hartree-Fock-Bogoliubov (SHFB) method to compute the even-even vacua of the Z = 50 isotopes and N = 50 isotones. For Sb and odd-A Sn isotopes, I perform calculations with a blocking procedure which accounts for the polarization effects, including deformations. Results: The blocking SHFB calculations show that the light odd-A Sb isotopes, with only one valence proton occupying down-sloping ?= 11/2~- and ?= 7/2~+ Nilsson orbits, assume finite oblate deformations. This reduces the energy differences between 11/2~- and 7/2~+ states by about 500 keV for _(51)Sb_(56-66), bringing the energy-difference curve closer to the experimental one. With UNE2T1 energy density functional (EDF), which differs from UNEDF2 parametrization by tensor terms, a better description of the slope of ?e(π1h_(11/2) - π1g_(7/2)) as a function of neutron number has been obtained. However, the trend of ?e(π1g_(7/2) - π2d_(5/2)) curve is worse using UNE2T1 EDF. ?e(ν3s_(1/2) - ν2d_(5/2)) and ?e(ν1g_(7/2)- ν2d_(5/2)) curve for N = 50 isotones using UNE2T1 seems to be consistent with experimental data. The neutron SE of ?e(ν1h_(11/2) - ν1g_(7/2)) and ?e(ν1g_(7/2) - ν2d_(5/2)) for Sn isotopes are shown to be sensive to α_T tensor parameter. Conclusions: Within the Skyrme self-consistent mean-field model, the
机译:背景:近年来,在将壳体进化(SE)与潜在的核相互作用相关联的同壳进化(SE)与潜在的核相互作用的链条相关联。特别是,已经完全明确地确定了Skyrme相互作用的张量部分对于理解Z,n = 50个壳闭合的某种Z,N = 50个壳闭合是必不可少的。目的:目前工作的目的是双重的:(1)研究由于在Z,n = 50壳封口上方的封堵上的封闭件引起的变形效果,并在张量部分中检测张量部分中的最佳参数化Z,n = 50壳封闭的正确描述。方法:我使用Skyrme-Hartree-Fock-Bogoliubov(SHFB)方法来计算Z = 50同位素的均匀疫苗和N = 50个异种。对于SB和Odd-A SN同位素,我用阻塞过程执行计算,该阻塞过程占极化效应,包括变形。结果:阻断SHFB计算表明,灯奇-ASB同位素,只有一个价质子占据下倾斜倾斜的质子?= 11/2〜 - 和?= 7/2〜+ Nilsson轨道,假设有限否定变形。这降低了11/2〜 - 和7/2〜+状态的能量差,对于_(51)SB_(56-66),使能量差异曲线更接近实验。使用UNE2T1能量密度函数(EDF),其与张量术语不同于UNEDF2参数化,更好地描述了作为中子数的函数的θe(π1h_(11/2) - π1g_(7/2))的斜率获得。但是,使用UNE2T1 EDF更糟糕的趋势?e(π1g_(7/2) - π2d_(5/2))曲线更差。 ?e(ν3s_(1/2) - ν2d_(5/2))和?e(ν1g_(7/2) - ν2d_(5/2))对于使用UNE2T1的n = 50异味的曲线似乎与实验数据一致。 Sn同位素的αe(ν1H_(11/2) - ν1G_(7/2) - ν1g_(7/2))和αe(ν1g_(7/2) - ν2d_(5/2))的中子se被认为是敏感的α_t张量范围。结论:在Skyrme自我一致的平均场模型中,

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