论文标题
原始超磁场上的重子外生物限制
Baryon isocurvature constraints on the primordial hypermagnetic fields
论文作者
论文摘要
已经指出,电势对称性破裂处的高磁性螺旋性衰减可能已通过粒子物理标准模型中的手性异常产生了观察到的宇宙的巴属不对称性。尽管可以充分产生观察到的巴属不对称的完全螺旋磁场不足以解释费米卫星推断出的白术磁场的起源,但螺旋形和非螺旋原始磁场的混合物可以解释baryeogeness和同一磁性磁场的混合物。我们首先表明,这种情况是由原始磁场产生的重子外膜扰动振幅的限制所排除的,以避免在大爆炸核合成时氘化过量生产。然后,我们表明,任何试图通过原始磁场发生来解释静电磁场的起源,而在电动对称性破裂之前,由于上述约束,无论其螺旋性和男性生成机制如何。
It has been pointed out that hypermagnetic helicity decay at the electroweak symmetry breaking may have produced the observed baryon asymmetry of the Universe through the chiral anomaly in the standard model of particle physics. Although fully helical magnetic field that can adequately produce the observed baryon asymmetry is not strong enough to explain the origin of the intergalactic magnetic field inferred by the Fermi satellite, the mixture of helical and nonhelical primordial magnetic fields may explain both baryogenesis and the intergalactic magnetic fields simultaneously. We first show that such a scenario is ruled out by the constraint on the amplitude of baryon isocurvature perturbations produced by the primordial magnetic fields to avoid overproduction of deuterium at the big bang nucleosynthesis. Then we show that any attempt to explain the origin of intergalactic magnetic field by primordial magnetogenesis before the electroweak symmetry breaking does not work due to the above constraint irrespective of the helicity and baryogenesis mechanism.