论文标题
部分可观测时空混沌系统的无模型预测
Quark condensate and magnetic moment in a strong magnetic field
论文作者
论文摘要
本文通过采用Dyson-Schinginger方程(DSE)研究了强大的外部磁场中的夸克冷凝物,磁矩,磁性极化和磁化率。结果表明,这些物理量是磁场的功能。我们注意到,夸克的自旋极化与磁场幅度大致成正比。为了进行比较,我们研究了组成夸克模型框架中核子的磁矩和敏感性,并证明这两个量随着磁场的上升而增加。
This paper studies the quark condensate, magnetic moment, magnetic polarization, and magnetic susceptibility in a strong external magnetic field by employing the Dyson-Schwinger equations (DSE). The results show that these physical quantities as functions of the magnetic field. We note that the quark's spin polarizations are approximately proportional to the magnetic field magnitude. For comparison, we investigate the magnetic moments and susceptibility of the nucleon in the constituent quark model framework and demonstrate that both these quantities increase as the magnetic field rises.