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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Translationally invariant calculations of form factors, nucleon densities and momentum distributions for finite nuclei with short-range correlations included
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Translationally invariant calculations of form factors, nucleon densities and momentum distributions for finite nuclei with short-range correlations included

机译:包括短程相关的有限原子核的形状因子,核子密度和动量分布的平移不变计算

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摘要

Relying upon our previous treatment of the density matrices for nuclei (in general, nonrelativistic self-bound finite systems) we are studying a combined effect of center-of-mass motion and short-range nucleon-nucleon correlations on the nucleon density and momentum distributions in light nuclei (~4He and ~(16)O). Their intrinsic ground-state wave functions are constructed in the so-called fixed center-ofmass approximation, starting with mean-field Slater determinants modified by some correlator (e.g., after Jastrow or Villars). We develop the formalism based upon the Cartesian or boson representation, in which the coordinate and momentum operators are linear combinations of the creation and annihilation operators for oscillatory quanta in the three different space directions, and get the own “Tassie-Barker” factors for each distribution and point out other model-independent results. After this separation of the center-ofmass motion effects we propose additional analytic means in order to simplify the subsequent calculations (e.g., within the Jastrow approach or the unitary correlation operator method). The charge form factors, densities and momentum distributions of ~4He and ~(16)O evaluated by using the well-known cluster expansions are compared with data, our exact (numerical) results and microscopic calculations.
机译:依靠我们先前对核密度矩阵的处理(通常是非相对论的自绑定有限系统),我们正在研究质心运动和短距离核子-核子相关性对核子密度和动量分布的组合影响在轻核中(〜4He和〜(16)O)。它们的固有基态波函数以所谓的固定质心近似值构造,从某些相关器(例如,在Jastrow或Villars之后)修改的均值Slater行列式开始。我们基于笛卡尔或玻色子表示法开发形式主义,其中坐标和动量算子是在三个不同空间方向上的振荡量子的创建算子和an灭算子的线性组合,并且每个算子都有自己的“ Tassie-Barker”因子分布并指出其他与模型无关的结果。在将质心运动效果分离之后,我们提出了额外的分析方法,以简化后续计算(例如,在Jastrow方法或the相关算子方法内)。通过使用众所周知的簇扩展评估的〜4He和〜(16)O的电荷形式因子,密度和动量分布,与数据,我们的精确(数值)结果和微观计算进行了比较。

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