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首页> 外文期刊>The Astrophysical journal >THE NUCLEI OF RADIO GALAXIES IN THE ULTRAVIOLET: THE SIGNATURE OF DIFFERENT EMISSION PROCESSES
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THE NUCLEI OF RADIO GALAXIES IN THE ULTRAVIOLET: THE SIGNATURE OF DIFFERENT EMISSION PROCESSES

机译:紫外线中的放射性星系核:不同发射过程的标志

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We have studied the nuclei of 28 radio galaxies from the 3CR sample in the UV band. Unresolved nuclei (central compact cores: CCCs) are observed in 10 of the 13 FR Ⅰ galaxies, and in five of the 15 FR Ⅱ galaxies. All sources that do not have a CCC in the optical do not have a CCC in the UV. Two FR Ⅰ galaxies (3C 270 and 3C 296) have a CCC in the optical but do not show the UV counterpart. Both of them show large dusty disks observed almost edge-on, possibly implying that they play a role in obscuring the nuclear emission. We have measured optical-UV spectral indices α_0, uv between ~0.6 and ~7.0 (F_ν ∝ ν~(-α)). Broad-line radio galaxies have the flattest spectra, and their values of α_0, UV are also confined to a very narrow range. This is consistent with radiation produced in a geometrically thin, optically thick accretion disk. On the other hand, FR I nuclei, which are most plausibly originated by synchrotron emission from the inner relativistic jet, show a wide range of α_0, UV There is a clear trend with orientation in that sources observed almost edge-on or with clear signs of dust absorption have the steepest spectra. These observations imply that in FR Ⅰ galaxies, obscuration can be present, but the obscuring material is not in a " standard " geometrically thick torus. The most striking difference between these absorbing structures and the classic active galactic nucleus "tori" resides in the lower optical depth of the FR Ⅰ galaxy obscuring material.
机译:我们已经研究了来自3CR样品在紫外波段的28个射电星系的核。在13个FRⅠ星系中的10个和15个FRⅡ星系中的5个中观察到未分辨核(中心致密核:CCC)。光学中没有CCC的所有光源在UV中都没有CCC。两个FRⅠ星系(3C 270和3C 296)在光学上具有CCC,但未显示UV对应物。它们都显示出大的尘埃盘,几乎在边缘被观察到,这可能意味着它们在掩盖核辐射方面发挥了作用。我们测得的光学紫外光谱指数α_0,uv在〜0.6和〜7.0之间(F_ν∝ν〜(-α))。宽带无线电星系的光谱最平坦,其α_0,UV值也被限制在非常窄的范围内。这与在几何上较薄,光学上较厚的吸积盘中产生的辐射一致。另一方面,FR I核最可能是由内部相对论射流的同步加速器发射引起的,显示出很大的α_0,UV范围。取向方面存在明显的趋势,即观察到的源几乎在边缘或明显的迹象的灰尘吸收光谱最陡。这些观察结果暗示在FRⅠ星系中可能存在遮盖物,但是遮盖物不在“标准”几何形状厚的圆环中。这些吸收结构与经典的活跃银河核“ tori”之间最显着的区别在于FRⅠ星系遮挡物质的较低光学深度。

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