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DISCOVERY OF INVERSE-COMPTON X-RAYS IN RADIO LOBES

机译:无线电波中反向量X射线的发现

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摘要

Inverse-Compton (IC) scattering of cosmic microwave background photons into the X-ray band by relativistic electrons in diffuse radio lobes is an obligatory process. We present the strongest evidence to date for the detection of these IC X-rays. They appear in a deep image of the nearby radio galaxy Fornax A (=NGC 1316) obtained with the Position Sensitive Proportional Counter on board the ROSAT satellite. The spatial correspondence of the X-ray and radio emission is excellent. The absence of Faraday depolarization in the lobes argues strongly against the possibility that the X-rays are due to an entrained thermal plasma. The detected level of X-rays is somewhat higher than, but consistent with, that expected from the assumption of equipartition between magnetic fields and relativistic electrons in the lobes. This observation provides the first direct estimate of the magnetic field of a radio lobe, B_(IC) approx= 2-3 μG, indicating that the integrated energy output of this active galactic nucleus is near the minimum energy level.
机译:宇宙无线电背景光子通过相对论电子在弥漫性无线电波瓣中的逆康普顿(IC)散射到X射线带是一个必然的过程。我们提供了迄今为止最有力的证据来检测这些IC X射线。它们出现在附近的射电星系Fornax A(= NGC 1316)的深层图像中,该星系是通过ROSAT卫星上的位置敏感比例计数器获得的。 X射线和无线电发射的空间对应性极好。叶片中不存在法拉第去极化,强烈反对X射线是由于夹带的热等离子体引起的。 X射线的探测水平比叶瓣中的磁场和相对论电子之间的均分假设所预期的水平高一些,但与之一致。该观测结果提供了对无线电波磁场的直接直接估计,B_(IC)大约为2-3μG,表明该活跃银河原子核的积分能量输出接近最小能量水平。

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