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X-RAY EMISSION PROPERTIES OF LARGE SCALE JETS, HOTSPOTS AND LOBES IN ACTIVE GALACTIC NUCLEI

机译:大规模喷射,热点和活性银核中裂片的X射线排放特性

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摘要

We examine a systematic comparison of jet-knots, hotspots and radio lobes recently observed with Chandra and ASCA. The data was compiled at radio (5GHz) and X-ray frequencies (1keV) for more than 40 radio galaxies. We examined three models for the X-ray production: synchrotron (SYN), synchrotron self-Compton (SSC) and external Compton on CMB photons (EC). For the SYN sources, X-ray photons are produced by ultrarelativistic electrons with energies 10-100TeV that must be accelerated in situ. For the other objects, a simple formulation of calculating the "expected" SSC or EC fluxes under an equipartition hypothesis is presented. We confirmed that the observed X-ray fluxes are close to the expected ones for non-relativistic emitting plasma velocities in the case of radio lobes and majority of hotspots, whereas considerable fraction of jet-knots is too bright at X-rays to be explained in this way. We concluded, if the inverse-Compton model is the case, the X-ray bright jet-knots are most likely far from the minimum-power condition. We however prefer the other possibility, namely that the observed X-ray emission from all of the jet-knots is synchrotron in origin.
机译:我们研究了最近用Chandra和Asca观察到的喷气结,热点和无线电裂片的系统比较。该数据在无线电(5GHz)和X射线频率(1KeV)上编译超过40多个无线电星系。我们检查了X射线生产的三种模型:同步rotron(SYN),同步rotron Self-Compton(SSC)和CMB Photons(EC)上的外部Compton。对于SYN源,通过具有能量10-100TEV的Utrariviver电子产生的X射线光子,必须原位加速。对于其他目的,提出了在ectipartition假设下计算“预期”SSC或EC通量的简单配方。我们确认观察到的X射线通量接近预期的用于无相似性的散射等离子体速度,在无线电裂片和大多数热点的情况下,而在X射线下,射流结的相当大量的喷射结太亮了通过这种方式。我们得出结论,如果逆康顿模型是这种情况,X射线亮的喷射结很可能远非最小功率状态。然而,我们更喜欢其他可能性,即观察到的来自所有喷射结的X射线发射是原产地的同步rotron。

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