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Fermionic dispersion relations at finite temperature and non-vanishing chemical potentials in the minimal standard model

机译:最小温度模型中有限温度下的铁离子弥散关系和化学势不消失

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摘要

We calculate the fermionic dispersion relations in the minimal standard model at finite temperature in presence of non-vanishing chemical potentials due to the CP-asymmetric fermionic background. The dispersion relations are calculated for a vacuum expectation value of the Higgs field equal to zero (unbroken electroweak symmetry). The calculation is performed in the real time formalism of the thermal field theory at one-loop order in a general #xi# gauge. The fermionic self-energy is calculated at leading order in temperature and chemical potential and this fact permits us to obtain gauge-invariant analytical expressions for the dispersion relations.
机译:由于CP不对称的铁离子背景,我们在最小温度下的最小标准模型中计算了不存在化学势的情况下的铁离子分散关系。计算希格斯场的真空期望值等于零(无电弱对称性)的色散关系。该计算是在常规#xi#量规中以热循环理论的实时形式一环执行的。费米离子的自能在温度和化学势上处于领先地位,因此这一事实使我们能够获得色散关系的规范不变的解析表达式。

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