首页> 外文期刊>The Astrophysical journal >TOWARD A COMPREHENSIVE MODEL FOR FEEDBACK BY ACTIVE GALACTIC NUCLEI: NEW INSIGHTS FROM M87 OBSERVATIONS BY LOFAR, FERMI, AND H.E.S.S.
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TOWARD A COMPREHENSIVE MODEL FOR FEEDBACK BY ACTIVE GALACTIC NUCLEI: NEW INSIGHTS FROM M87 OBSERVATIONS BY LOFAR, FERMI, AND H.E.S.S.

机译:建立主动银河系核反馈的综合模型:LOFAR,FERMI和H.E.S.S.对M87观测的新见解

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Feedback by active galactic nuclei (AGNs) appears to be critical in balancing radiative cooling of the low-entropy gas at the centers of galaxy clusters and in mitigating the star formation of elliptical galaxies. New observations of M87 enable us to put forward a comprehensive model for the physical heating mechanism. Low-frequency radio observations by LOFAR revealed the absence of fossil cosmic-ray (CR) electrons in the radio halo surrounding M87. This puzzle can be resolved by accounting for the CR release from the radio lobes and the subsequent mixing of CRs with the dense ambient intracluster gas, which thermalizes the electrons on a timescale similar to the radio halo age of 40?Myr. Hadronic interactions of similarly injected CR protons with the ambient gas should produce an observable gamma-ray signal in accordance with the steady emission of the low state of M87 detected by Fermi and H.E.S.S. Hence, we normalize the CR population to the gamma-ray emission, which shows the same spectral slope as the CR injection spectrum probed by LOFAR, thereby supporting a common origin. We show that CRs, which stream at the Alfvén velocity with respect to the plasma rest frame, heat the surrounding thermal plasma at a rate that balances that of radiative cooling on average at each radius. However, the resulting global thermal equilibrium is locally unstable and allows for the formation of the observed cooling multi-phase medium through thermal instability. Provided that CR heating balances cooling during the emerging "cooling flow," the collapse of the majority of the gas is halted around 1?keV—in accordance with X-ray data. We show that both the existence of a temperature floor and the similar radial scaling of the heating and cooling rates are generic predictions of the CR heating model.
机译:活跃银河系原子核(AGN)的反馈对于平衡星系团中心低熵气体的辐射冷却和减轻椭圆星系的恒星形成至关重要。 M87的新发现使我们能够为物理加热机制提出一个综合模型。 LOFAR的低频无线电观测表明,M87周围的无线电晕中没有化石宇宙射线(CR)电子。解决这一难题的方法是,考虑到无线电波瓣释放的CR以及随后CR与稠密的周围簇内气体的混合,从而在类似于40毫米无线电晕年龄的时间尺度上使电子热化。根据费米和H.E.S.S.探测到的M87低态的稳定发射,类似注入的CR质子与周围气体的强子相互作用应产生可观察到的伽马射线信号。因此,我们将CR种群归一化为伽马射线发射,它显示出与LOFAR探测到的CR注入光谱相同的光谱斜率,从而支持一个共同的起源。我们表明,CRs以等离子静止框架的Alfvén速度流动,以平衡每个半径平均辐射冷却速率的速率加热周围的热等离子体。但是,由此产生的整体热平衡在局部不稳定,并允许通过热不稳定性形成观察到的冷却多相介质。如果CR加热在出现的“冷却流”期间平衡冷却,则根据X射线数据,大多数气体的崩溃将在1?keV附近停止。我们表明,温度底的存在以及加热和冷却速率的类似径向比例都是CR加热模型的一般预测。

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