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Axion-Driven Cosmic Magnetogenesis during the QCD Crossover

机译:QCD交叉过程中轴驱动的宇宙磁生成

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We propose a mechanism for the generation of a magnetic field in the early Universe during the QCD crossover assuming that dark matter is made of axions. Thermoelectric fields arise at pressure gradients in the primordial plasma due to the difference in charge, energy density, and equation of state between the quark and lepton components. The axion field is coupled to the EM field, so when its spatial gradient is misaligned with the thermoelectric field, an electric current is driven. Because of the finite resistivity of the plasma, an electric field appears that is generally rotational. For a QCD axion mass consistent with observational constraints and a conventional efficiency for turbulent dynamo amplification- driven by the same pressure gradients responsible for the thermoelectric fields-a magnetic field is generated on subhorizon scales. After significant Alfvenic unwinding, it reaches a present-day strength of B similar to 10(-13) G on a characteristic scale L-B similar to 20 pc. The resulting combination of BLB1/2 is significantly stronger than in any astrophysical scenario, providing a clear test for the cosmological origin of the field through. gamma-ray observations of distant blazars. The amplitude of the pressure gradients may be inferred from the detection of concomitant gravitational waves, while several experiments are underway to confirm or rule out the existence of axions.
机译:我们提出了一种机制,假设暗物质是由轴构成的,那么在QCD穿越过程中,在早期宇宙中会产生磁场。由于电荷,能量密度以及夸克和轻子组件之间的状态方程的差异,在原始等离子体中的压力梯度处会出现热电场。轴场耦合到EM场,因此当其空间梯度与热电场不对齐时,会驱动电流。由于等离子体的有限电阻率,通常会产生旋转的电场。对于与观测约束一致的QCD轴力质量以及湍流发电机放大的常规效率(由负责热电场的相同压力梯度驱动),在超水平尺度上产生了磁场。经过重要的Alfvenic放卷后,它的当前强度达到了B,类似于10(-13)G,特征尺度为L-B,类似于20 pc。最终的BLB1 / 2组合要比任何天体物理方案都强得多,从而为整个宇宙的宇宙学起源提供了清晰的检验。遥远的blazar的伽马射线观测。压力梯度的幅度可以通过检测伴随的重力波来推断,同时正在进行一些实验以确认或排除轴的存在。

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  • 来源
    《Physical review letters》 |2018年第2期|021301.1-021301.6|共6页
  • 作者单位

    Univ Oxford, Dept Phys, Parks Rd, Oxford OX1 3PU, England;

    Univ Oxford, Dept Phys, Parks Rd, Oxford OX1 3PU, England;

    Queens Univ Belfast, Sch Math & Phys, Belfast BT7 1NN, Antrim, North Ireland;

    Univ Oxford, Dept Phys, Parks Rd, Oxford OX1 3PU, England;

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