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低能弱反应如何限制三核子力和中子-中子散射长度。

How low-energy weak reactions can constrain three-nucleon forces and the neutron-neutron scattering length.

作者信息

Gårdestig A, Phillips D R

机构信息

Department of Physics and Astronomy, Ohio University, Athens, Ohio 45701, USA.

出版信息

Phys Rev Lett. 2006 Jun 16;96(23):232301. doi: 10.1103/PhysRevLett.96.232301. Epub 2006 Jun 13.

Abstract

We show that chiral symmetry and gauge invariance enforce relations between the short-distance physics that occurs in a number of electroweak and pionic reactions on light nuclei. Within chiral perturbation theory, this is manifested via the appearance of the same axial isovector two-body contact term in pi(-)d --> nngamma, p-wave pion production in NN collisions, tritium beta decay, pp fusion, nud scattering, and the hep reaction. Using a Gamow-Teller matrix element obtained from calculations of pp fusion as input, we compute the neutron spectrum obtained in pi(-)d --> nngamma. With the short-distance physics in this process controlled from pp --> de(=)nu(e), the theoretical uncertainty in the nn scattering length extracted from pi(-)d --> nngamma is reduced by a factor larger than 3, to approximately < or = 0.05 fm.

摘要

我们表明,手征对称性和规范不变性强制规定了在轻核上的一些电弱和π介子反应中出现的短程物理之间的关系。在手征微扰理论中,这通过在π⁻d→nngamma、NN碰撞中的p波π介子产生、氚β衰变、pp聚变、nud散射和hep反应中出现相同的轴矢量同位旋两体接触项而体现出来。使用从pp聚变计算中获得的伽莫夫-泰勒矩阵元作为输入,我们计算了π⁻d→nngamma中获得的中子能谱。由于此过程中的短程物理由pp→de⁺νe控制,从π⁻d→nngamma提取的nn散射长度的理论不确定性降低了超过3倍,降至约≤0.05飞米。

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