论文标题
热和磁化培养基中中性锥子的杆和筛选质量:NAMBU - JONA-LASINIO模型的全面研究
The pole and screening masses of neutral pion in hot and magnetized medium: a comprehensive study in the Nambu--Jona-Lasinio model
论文作者
论文摘要
在这项工作中,我们不仅通过利用随机相位近似(RPA)方法在有限温度和磁场下的中性乳头的筛选质量进行研究,这是在两种味道Nambu-Jona-Lasinio(NJL)模型的框架中。在存在磁场的情况下,即兰道水平表示(LLR)和适当的时间表示(PTR)的两个等效形式,用于获得极化函数的相应分析表达式(除PTR中极点质量的表达式外)。为了评估低摩氏膨胀(LME)的适用区域,我们将完整RPA(FRPA)内的数值结果与降低的RPA(RRPA)(RRPA)(即LME中的RPA)进行了比较。可以证实,在存在外部磁场的情况下,FRPA的极质量在Mott过渡温度下突然质量跳跃,而Mott过渡温度被磁场催化。通过分析与热浴和磁场破坏Lorentz不变性有关的定向声速度的行为,我们澄清了先前文献中存在的两个问题:一个问题是,媒介中的横向声速度始终比统一性更大,因此在不统一的情况下是较大的远古范围,而该方案的距离是正常的,而不是cos的范围,则veriative ver ver veriation ver ver ver ver ver ver ver ver ver ver的范围却是范围的范围。由于所使用的衍生膨胀方法的限制,在有限温度下的统一性相同。
In this work, we investigate not only the pole masses but also the screening masses of neutral pions at finite temperature and magnetic field by utilizing the random phase approximation (RPA) approach in the framework of the two-flavor Nambu--Jona-Lasinio (NJL) model. And two equivalent formalisms in the presence of a magnetic field, i.e. the Landau level representation (LLR) and the proper-time representation (PTR), are applied to obtain the corresponding analytical expressions of the polarization functions (except the expressions for the pole masses in the PTR). In order to evaluate the applicable region of the low-momentum expansion (LME), we compare the numerical results within the full RPA (FRPA) with those within the reduced RPA (RRPA), i.e. the RPA in the LME. It is confirmed that the pole masses of π0in the FRPA suffer a sudden mass jump at the Mott transition temperature when in the presence of external magnetic field, and the Mott transition temperature is catalyzed by the magnetic field. And by analyzing the behaviors of the directional sound velocities of π0, which are associated with the breaking of the Lorentz invariance by the heat bath and the magnetic field, we clarify the two problems existing in previous literatures: one is that the transverse sound velocities in the medium are always larger than unity and thus violate the law of causality on account of the non-covariant regularization scheme, the other is that the longitudinal sound velocities are identically equal unity at finite temperature on account of the limitation of the derivative expansion method used.