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Magnetic field transfer from a hidden sector

机译:来自隐藏扇区的磁场传输

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Primordial magnetic fields in the dark sector can be transferred to magnetic fields in the visible sector due to a gauge kinetic mixing term. We show that the transfer occurs when the evolution of magnetic fields is dominated by dissipation due to finite electric conductivity, and does not occur at later times if the magnetic fields evolve according to magnetohydrodynamics scaling laws. The efficiency of the transfer is suppressed by not only the gauge kinetic mixing coupling but also the ratio between the large electric conductivity and the typical momentum of the magnetic fields. We find that the transfer gives nonzero visible magnetic fields today. However, without possible dynamo amplifications, the field transfer is not efficient enough to obtain the intergalactic magnetic fields suggested by the gamma-ray observations, although there are plenty of possibilities for efficient dark magnetogenesis, which are experimentally unconstrained.
机译:由于规范动力学混合项的缘故,暗区中的原始磁场可以转移到可见区中的磁场。我们表明,转移是在有限的电导率导致磁场的演化以耗散为主导时发生的,如果磁场根据磁流体动力学的定律演化,则转移不会在以后发生。转移的效率不仅受到表观动力学混合耦合的抑制,而且还受到大电导率与磁场典型动量之比的抑制。我们发现今天的转移会产生非零的可见磁场。但是,如果没有可能的发电机放大作用,尽管有效的暗磁发生方法有很多可能性,但磁场转移没有足够的效率来获得伽马射线观测所建议的星系间磁场,尽管这在实验上不受限制。

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