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Magnetism in the Early Universe

机译:早期宇宙中的磁性

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Blazar observations point toward the possible presence of magnetic fields over inter-galactic scales of the order of up to ~ 1 Mpc, with strengths of at least ~ 10~(-16) G. Understanding the origin of these large-scale magnetic fields is a challenge for modern astrophysics. Here we discuss the cosmological scenario, focussing on the following questions: (i) How and when was this magnetic field generated? (ii) How does it evolve during the expansion of the universe? (iii) Are the amplitude and statistical properties of this field such that they can explain the strengths and correlation lengths of observed magnetic fields? We also discuss the possibility of observing primordial turbulence through direct detection of stochastic gravitational waves in the mHz range accessible to LISA.
机译:Blazar观察指出,在最高〜1 mpc的阶段的银河间尺度上可能存在磁场的存在,具有至少〜10〜(-16)G.了解这些大型磁场的起源是 现代天体物理学的挑战。 在这里,我们讨论了宇宙学情景,侧重于以下问题:(i)这种磁场产生的方式以及何时产生? (ii)在宇宙扩展期间它如何发展? (iii)是该领域的幅度和统计特性,使得它们可以解释观察到的磁场的强度和相关长度? 我们还通过直接检测LISA可访问的MHz范围内的随机重力波来观察原始湍流的可能性。

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