Benchmark calculations of electromagnetic sum rules with a symmetry-adapted basis and hyperspherical harmonics

Benchmark calculations of electromagnetic sum rules with a symmetry-adapted basis and hyperspherical harmonics
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DOI:
10.1103/physrevc.102.014320
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发表时间:
2020-03
期刊:
arXiv: Nuclear Theory
影响因子:
--
通讯作者:
R. Baker;K. Launey;S. Bacca;N. Dinur;T. Dytrych
R. Baker;K. Launey;S. Bacca;N. Dinur;T. Dytrych
中科院分区:
其他
文献类型:
--
作者:
R. Baker;K. Launey;S. Bacca;N. Dinur;T. Dytrych

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我们证明了计算电磁和规则的\textit{ab initio}自适应无核壳模型的能力。通过实施Lanczos算法,我们计算非能量加权,能量加权,和逆能量加权和规则的电双极,偶极,和四极跃迁在$^4$He使用现实的相互作用。我们基准的结果与超球谐函数的方法,并显示协议内$2\sigma$,其中的不确定性估计使用的多体技术。我们调查的结果依赖于三种不同的相互作用,包括手征势,我们报告的$^4$He电偶极极化率计算的SA-NCSM再现的实验数据和早期的理论结果。我们还详细介绍了一种新的使用劳森程序,以消除虚假的质心贡献的总和规则,产生使用实验室框架坐标。我们进一步表明,这种相同的技术可以应用在洛伦兹积分变换方法,着眼于研究光通过中等质量核的电磁反应。
We demonstrate the ability to calculate electromagnetic sum rules with the \textit{ab initio} symmetry-adapted no-core shell model. By implementing the Lanczos algorithm, we compute non-energy weighted, energy weighted, and inverse energy weighted sum rules for electric monopole, dipole, and quadrupole transitions in $^4$He using realistic interactions. We benchmark the results with the hyperspherical harmonics method and show agreement within $2\sigma$, where the uncertainties are estimated from the use of the many-body technique. We investigate the dependence of the results on three different interactions, including chiral potentials, and we report on the $^4$He electric dipole polarizability calculated in the SA-NCSM that reproduces the experimental data and earlier theoretical outcomes. We also detail a novel use of the Lawson procedure to remove the spurious center-of-mass contribution to the sum rules that arises from using laboratory-frame coordinates. We further show that this same technique can be applied in the Lorentz integral transform method, with a view toward studies of electromagnetic reactions for light through medium-mass nuclei.