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首页> 外文期刊>The Astrophysical journal >Radiative Efficiency And Content Of Extragalactic Radio Sources: Toward A Universal Scaling Relation Between Jet Power And Radio Power
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Radiative Efficiency And Content Of Extragalactic Radio Sources: Toward A Universal Scaling Relation Between Jet Power And Radio Power

机译:银河外无线电源的辐射效率和含量:建立射流功率与无线电功率之间的通用比例关系

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We present an analysis of the energetics and particle content of the lobes of 24 radio galaxies at the cores of cooling clusters. The radio lobes in these systems have created visible cavities in the surrounding hot, X-ray-emitting gas, which allow direct measurement of the mechanical jet power of radio sources over six decades of radio luminosity, independently of the radio properties themselves. We find that jet (cavity) power increases with radio synchrotron power approximately as P_(jet) ~ L_(radio)~β, where 0.35 ≤ β ≤ 0.70 depending on the bandpass of measurement and state of the source. However, the scatter about these relations caused by variations in radiative efficiency spans more than 4 orders of magnitude. A number of factors contribute to this scatter, including aging, entrainment, variations in magnetic field strengths, and the partitioning of energy between electrons and nonradiating heavy particles. After accounting for variations in synchrotron break frequency (age), the scatter is reduced by ≈50% , yielding the most accurate scaling relation available between the lobe radio power and the jet (cavity) power. Furthermore, we place limits on the magnetic field strengths and particle content of the radio lobes using a variety of X-ray constraints. We find that the lobe magnetic field strengths vary between a few to several tens of microgauss depending on the age and dynamical state of the lobes. If the cavities are maintained in pressure balance with their surroundings and are supported by internal fields and particles in equipartition, the ratio of energy in electrons to heavy particles (k) must vary widely from approximately unity to 4000, consistent with heavy (hadronic) jets.
机译:我们对冷却星团核心的24个射电星系的波瓣的能量和粒子含量进行了分析。这些系统中的无线电波瓣在周围的高温,发出X射线的气体中形成了可见的空腔,这些空腔可直接测量六十年的光度范围内的无线电源的机械射流功率,而与无线电本身的性能无关。我们发现射流(腔)功率随着无线电同步加速器功率的增加而增加,近似为P_(jet)〜L_(radio)〜β,其中0.35≤β≤0.70取决于测量的带通和信号源的状态。然而,由辐射效率的变化引起的关于这些关系的分散跨越了超过4个数量级。造成这种散射的因素很多,包括老化,夹带,磁场强度的变化以及电子与非辐射重粒子之间的能量分配。在考虑了同步加速器中断频率(年龄)的变化之后,散射降低了约50%,从而在波瓣无线电功率和射流(腔)功率之间产生了最精确的比例关系。此外,我们使用各种X射线约束来限制无线电波的磁场强度和粒子含量。我们发现,波瓣磁场强度在几至几十微高斯之间变化,具体取决于波瓣的年龄和动态状态。如果型腔与周围环境保持压力平衡,并由内部场和等分的粒子支撑,则电子与重粒子(k)的能量比必须在大约1到4000的宽范围内变化,这与重(强)射流一致。

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