论文标题

与原始磁化相吻合的宇宙空间观测

Cosmic-void observations reconciled with primordial magnetogenesis

论文作者

Hosking, David N., Schekochihin, Alexander A.

论文摘要

有人提出,宇宙空隙中的层次介质托管的弱磁场可能是早期宇宙的遗物。然而,公认的湍流磁流失动力衰减模型预测,最初在不偶然的electroweak相过渡(EWPT)上产生的田野的当前强度将太低,无法解释从Tev Blazars中观察到的$γ$ rays的散射。在这里,我们提出衰减是由磁重新连接介导的,并保存了均方根的磁螺旋度波动水平。我们发现,在该理论下,遗物领域的数量级要比以前的治疗所表明的要强,后者恢复了EWPT-RELIC假设与观察性约束的一致性。此外,有效的EWPT磁发生将以重组和种子星系簇领域在接近其当今强度接近的种子星系簇领域来解决哈勃张力所需的强度。

It has been suggested that the weak magnetic field hosted by the intergalactic medium in cosmic voids could be a relic from the early Universe. However, accepted models of turbulent magnetohydrodynamic decay predict that the present-day strength of fields originally generated at the electroweak phase transition (EWPT) without parity violation would be too low to explain the observed scattering of $γ$-rays from TeV blazars. Here, we propose that the decay is mediated by magnetic reconnection and conserves the mean square fluctuation level of magnetic helicity. We find that the relic fields would be stronger by several orders of magnitude under this theory than was indicated by previous treatments, which restores the consistency of the EWPT-relic hypothesis with the observational constraints. Moreover, efficient EWPT magnetogenesis would produce relics at the strength required to resolve the Hubble tension via magnetic effects at recombination and seed galaxy-cluster fields close to their present-day strength.

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