论文标题
弱磁化培养基中的Gluon极化张量和分散关系
Gluon polarization tensor and dispersion relation in a weakly magnetized medium
论文作者
论文摘要
我们研究以一环秩序在弱磁性背景中移动的胶子的极化和分散性能。为此,我们在弱场膨胀中显示了带电费米的传播器的两个替代推导,并使用此表达式计算到Gluon偏振张量的最低阶磁场校正。我们明确表明,尽管出现了繁琐的外观,但Gluon极化张量是按量规不变性所要求的。我们还表明,这三种极化模式都没有发展出磁性质量并沿光锥传播,但由于磁场的存在而丢失了洛伦兹的不变性。通过与磁场中所有阶的Gluon极化张量的表达相比,存在与有限的Gluon质量相对应的第二个溶液的存在是虚假的,并且是磁场强度中最低顺序近似值的伪影。我们还研究了真实振奋的极化模式的强度。我们得出的结论是,只要丢弃虚假溶液,只要野外强度与循环费米质量相比,只要田间强度较小,gluon极化和分散性能的最低顺序近似值就很高。
We study the polarization and dispersion properties of gluons moving within a weakly magnetized background at one-loop order. To this end, we show two alternative derivations of the charged fermion propagator in the weak field expansion and use this expression to compute the lowest order magnetic field correction to the gluon polarization tensor. We explicitly show that, in spite of its cumbersome appearance, the gluon polarization tensor is transverse as required by gauge invariance. We also show that none of the three polarization modes develops a magnetic mass and that gluons propagate along the light cone, non withstanding that Lorentz invariance is lost due to the presence of the magnetic field. By comparing with the expression for the gluon polarization tensor valid to all orders in the magnetic field, the existence of a second solution, corresponding to a finite gluon mass, is shown to be spurious and an artifact of the lowest order approximation in the field strength. We also study the strength of the polarization modes for real gluons. We conclude that, provided the spurious solutions are discarded, the lowest order approximation to the gluon polarization and dispersion properties is good as long as the field strength is small compared to the loop fermion mass.