论文标题

部分可观测时空混沌系统的无模型预测

AGN jets do not prevent the suppression of conduction by the heat buoyancy instability in simulated galaxy clusters

论文作者

Beckmann, Ricarda S., Dubois, Yohan, Pellissier, Alisson, Polles, Fiorella L., Olivares, Valeria

论文摘要

必须有效地重新加热星系簇中心,以避免冷却灾难。一种潜在的再加热机制是各向异性热传导,它可以将热能从中间半径运输到群集中心。但是,如果未重新传递磁场,各向异性热传导将驱动热浮力不稳定性(HBI),以重新定位磁场线并关闭径向热通量。我们在与自旋驱动的AGN射流的影响下,在具有各向异性热传导的理想化磁流动力模拟中,对热传导的效率进行了效率。尽管黑洞旋转能够定期重新定位喷气机,以便以准异端方式驱动喷气引起的湍流,但HBI在群集的中部50 kpc之外保持效率,那里的热量是最大的。结果,如果中央活性银河核是湍流的唯一来源,传导在调节群内培养基的冷却中没有重要作用。惠斯勒波驱动的热传导饱和降低了HBI的幅度,但并不能阻止它。

Centres of galaxy clusters must be efficiently reheated to avoid a cooling catastrophe. One potential reheating mechanism is anisotropic thermal conduction, which could transport thermal energy from intermediate radii to the cluster center. However, if fields are not re-randomised, anisotropic thermal conduction drives the heat buoyancy instability (HBI) which reorients magnetic field lines and shuts off radial heat fluxes. We revisit the efficiency of thermal conduction under the influence of spin-driven AGN jets in idealised magneto-hydrodynamical simulations with anisotropic thermal conduction. Despite the black hole spin's ability to regularly re-orientate the jet so that the jet-induced turbulence is driven in a quasi-isotropic fashion, the HBI remains efficient outside the central 50 kpc of the cluster, where the reservoir of heat is the largest. As a result, conduction plays no significant role in regulating the cooling of the intra-cluster medium if central active galactic nuclei are the sole source of turbulence. Whistler-wave driven saturation of thermal conduction reduces the magnitude of the HBI but does not prevent it.

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