论文标题
对热和磁性预气体的电气电导率和大厅电导率的中等影响
Medium effects on the electrical and Hall conductivities of a hot and magnetized pion gas
论文作者
论文摘要
使用动力学理论方法在松弛时间近似(RTA)的范围内评估了均匀磁场中的电气和霍尔电导率。相对于$ππ$散射的中等内部横截面的放松时间是使用使用热场理论技术的一环修改的热传播器和交换的$ρ$和$σ$ erson的。对于较高的磁场值,观察到电导率的单调增加,可以观察到温度。但是,对于给定的温度,发现电导率随着磁场而稳定下降。在磁场的较低值下,霍尔电导率比电导率更快地降低,而在磁场的较高值下,可以看到线性增加。与使用真空横截面的情况相比,发现中等内部散射横截面对电气和霍尔电导率的温度依赖性产生显着影响。
The electrical and Hall conductivities in a uniform magnetic field are evaluated for an interacting pion gas using the kinetic theory approach within the ambit of relaxation time approximation (RTA). The in-medium cross sections vis-a-vis the relaxation time for $ππ$ scattering are obtained using a one-loop modified thermal propagator for the exchanged $ρ$ and $σ$ mesons using thermal field theoretic techniques. For higher values of the magnetic field, a monotonic increase of the electrical conductivity with the temperature is observed. However, for a given temperature the conductivity is found to decrease steadily with magnetic field. The Hall conductivity, at lower values of the magnetic field, is found to decrease with temperature more rapidly than the electrical conductivity, whereas at higher values of the magnetic field, a linear increase is seen. Use of the in-medium scattering cross-section is found to produce a significant effect on the temperature dependence of both electrical and Hall conductivities compared to the case where vacuum cross-section is used.