论文标题

银河形成模拟中的Blandford-Znajek喷气机:方法和实施

Blandford-Znajek jets in galaxy formation simulations: method and implementation

论文作者

Talbot, Rosie Y., Bourne, Martin A., Sijacki, Debora

论文摘要

据信,由活性银河核(AGN)发射的喷气机在塑造星系的性质中起着重要作用,并提供了一种能量可行的机制,可以通过该机制淬灭星系。在这里,我们提出了一种新颖的AGN反馈模型,并将其纳入AREPO代码中,该模型随着积聚流的薄薄$α$ disc的发展而演变为黑洞的质量和旋转,我们自言自语地将其与Blandford-Znajek Jet搭配。我们将模型应用于嵌入热的环境培养基(CGM)中的典型无线电大声seyfert星系的中心区域。我们发现,由于产生回忆冲击和剧烈的不稳定性,这些冲击激发了CGM和Jet材料的混合效率,因此有效地发射了高压环境的喷气机。然而,较高的喷气机的横梁并不容易受到不稳定性的破坏,因此喷射底座的大部分动量通量都将其保留到头部,在那里,射流在反向冲击中终止。所有喷气机都夹带了大量的冷环盘材料,尽管在能量上微不足道的材料中,但与热的,被夹住的CGM材料一起占主导地位。射流功率由于黑洞的有效自我调节而显着发展,该黑洞是由世俗驱动的间歇性质量流提供的。由于有效的Bardeen-Petterson扭矩,喷气机的方向直接发射到了周环光盘上。有趣的是,这些喷气机摧毁了圆盘的最内向区域,并驱动大规模,多相,湍流,双极外流。

Jets launched by active galactic nuclei (AGN) are believed to play a significant role in shaping the properties of galaxies and provide an energetically viable mechanism through which galaxies can become quenched. Here we present a novel AGN feedback model, which we have incorporated into the AREPO code, that evolves the black hole mass and spin as the accretion flow proceeds through a thin $α$-disc which we self-consistently couple to a Blandford-Znajek jet. We apply our model to the central region of a typical radio-loud Seyfert galaxy embedded in a hot circumgalactic medium (CGM). We find that jets launched into high pressure environments thermalise efficiently due to the formation of recollimation shocks and the vigorous instabilities that these shocks excite increase the efficiency of the mixing of CGM and jet material. The beams of more overpressured jets, however, are not as readily disrupted by instabilities so the majority of the momentum flux at the jet base is retained out to the head, where the jet terminates in a reverse shock. All jets entrain a significant amount of cold circumnuclear disc material which, while energetically insignificant, dominates the lobe mass together with the hot, entrained CGM material. The jet power evolves significantly due to effective self-regulation by the black hole, fed by secularly-driven, intermittent mass flows. The direction of jets launched directly into the circumnuclear disc changes considerably due to effective Bardeen-Petterson torquing. Interestingly, these jets obliterate the innermost regions of the disc and drive large-scale, multi-phase, turbulent, bipolar outflows.

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