论文标题

磁场在加油中的作用

Role of magnetic fields in fueling Seyfert nuclei

论文作者

Hu, Yue, Lazarian, Alex, Beck, Rainer, Xu, Siyao

论文摘要

据信分子气体是塞弗特星系中恒星形成和核活动的燃料。为了探索磁场在将分子气体漏斗到核区域中的作用,需要测量嵌入分子气中的磁场。通过将新的速度梯度技术(VGT)应用于ALMA和PAWS的CO同位素数据,我们可以在附近的几个Seyfert星系及其前所未有的高分辨率高分辨率磁场图中首次检测到共同相关的磁场。全球分子气体中VGT测量的磁场与现有HAWC+尘埃极化和VLA同步加速器极化所推论的磁场一致。通过VGT-CO和同步加速器极化所追踪的磁场之间的总体良好对齐可能支持恒星形成与宇宙射线产生之间的相关性。我们发现,通过VGT-CO所追踪的磁场在我们样品中大多数Seyfert的中央区域中具有显着的径向分量,在这种区域中可能发生有效的分子气体流入或流出。特别是,我们发现NGC 1097核环在CO所追踪的磁场与尘埃极化之间的局部未对准,而前者与中央条的方向保持一致。这种未对准揭示了不同气相的不同磁场构型,并且可能为持续的Seyfert活性加油提供了观察性诊断。

Molecular gas is believed to be the fuel for star formation and nuclear activity in Seyfert galaxies. To explore the role of magnetic fields in funneling molecular gas into the nuclear region, measurements of the magnetic fields embedded in molecular gas are needed. By applying the new velocity gradient technique (VGT) to ALMA and PAWS's CO isotopolog data, we obtain the first detection of CO-associated magnetic fields in several nearby Seyfert galaxies and their unprecedented high-resolution magnetic field maps. The VGT-measured magnetic fields in molecular gas globally agree with those inferred from existing HAWC+ dust polarization and VLA synchrotron polarization. An overall good alignment between the magnetic fields traced by VGT-CO and by synchrotron polarization may support the correlation between star formation and cosmic ray generation. We find that the magnetic fields traced by VGT-CO have a significant radial component in the central regions of most Seyferts in our sample, where efficient molecular gas inflows or outflows may happen. In particular, we find local misalignment between the magnetic fields traced by CO and dust polarization within the nuclear ring of NGC 1097, and the former aligns with the central bar's orientation. This misalignment reveals different magnetic field configurations in different gas phases and may provide an observational diagnostic for the ongoing multi-phase fueling of Seyfert activity.

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