Erratum: Nuclear and neutron matter G -matrix calculations with a chiral effective field theory potential including effects of three-nucleon interactions [Phys. Rev. C 88 , 064005 (2013)]

Erratum: Nuclear and neutron matter G -matrix calculations with a chiral effective field theory potential including effects of three-nucleon interactions [Phys. Rev. C 88 , 064005 (2013)]
复制标题

勘误:具有手性有效场论势的核和中子物质 G 矩阵计算,包括三核子相互作用的影响 [Phys.

DOI:
10.1103/physrevc.96.059903
复制
发表时间:
2017
期刊:
影响因子:
--
通讯作者:
M. Kohno
M. Kohno
中科院分区:
--
文献类型:
--
作者:
M. Kohno

文献摘要

被引文献

相似文献

在原论文中报告的核物质计算程序代码中发现了几个错误。手征有效场论(Ch-EFT)的三核子力(3 NF)导出的有效双核子力的自旋轨道项和张量项也存在误差。在校正这些误差之后,张紧力分量的增强从先前的约30%的值减小到约15%。虽然3 NF对改善核物质饱和性质的定性重要作用没有改变,但饱和曲线被修正定量地修改。在原始论文中,低能常数cD=− 4。381,cE=-1。126被使用,指的是核物质计算与手性低动量相互作用Hebeler等人。[1]的文件。用同样的cD和cE修正核物质计算的结果示于图1和图2。2(a)、2(B)和3(a)。
Several errors were found in the program code for the nuclear-matter calculation reported in the original paper. There also were errors in the spin-orbit and tensor terms of the effective two-nucleon forces derived from the three-nucleon forces (3NFs) of the chiral effective field theory (Ch-EFT). After correcting these errors, the enhancement of the tensor-force component is reduced to be about 15% from the previous value of about 30%. Although qualitatively important effects of the 3NFs for improving nuclear-matter saturation properties do not change, the saturation curve is modified quantitatively by the corrections. In the original paper, the low-energy constants cD=− 4. 381 and cE=− 1. 126 were used, referring to the nuclear-matter calculations with chiral low-momentum interactions by Hebeler et al.[1]. The results of the revised nuclear-matter calculation with the same cD’s and cE’s are shown in Figs. 2 (a), 2 (b), and 3 (a).