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首页> 外文期刊>The Astrophysical journal >ON THE DISAPPEARANCE OF THE BROAD-LINE REGION IN LOW-LUMINOSITY ACTIVE GALACTIC NUCLEI: THE ROLE OF THE OUTFLOWS FROM ADVECTION DOMINATED ACCRETION FLOWS
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ON THE DISAPPEARANCE OF THE BROAD-LINE REGION IN LOW-LUMINOSITY ACTIVE GALACTIC NUCLEI: THE ROLE OF THE OUTFLOWS FROM ADVECTION DOMINATED ACCRETION FLOWS

机译:低照度活性银河系核中百日线区域的消失:增加有节制的增生流的作用

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The broad-line region (BLR) disappears in many low-luminosity active galactic nuclei (AGNs), the reason of which is still controversial. The BLRs in AGNs are believed to be associated with the outflows from the accretion disks. Most of the low-luminosity AGNs contain advection-dominated accretion flows (ADAFs) which are very hot and have a positive Bernoulli parameter. ADAFs are therefore associated with strong outflows. We estimate the cooling of the outflows from the ADAFs and find that the gases in such hot outflows cannot always be cooled efficiently by bremsstrahlung radiation. The ADAF may co-exist with the standard disk, i.e., the inner ADAF connects to the outer thin accretion disk at radius R d,tr in the sources accreting at slightly lower than the critical rate (). For the ADAFs with L bol/L Edd 0.001, a secondary small inner cold disk is suggested to co-exist with the ADAF due to the condensation process. We estimate the Compton cooling of the outflow, of which the soft seed photons either come from the outer cold disk or the secondary inner cold disk. It is found that the gas in the outflow far from the ADAF may be efficiently cooled to form BLR clouds due to the soft seed photons emitted from the cold disks, provided the transition radius of the ADAF to the outer cold disk is small [r d,tr = R d,tr/(2GM/c 2) 20] or/and the secondary small cold disk has a luminosity L sd 0.003 L Edd. The BLR clouds can still be formed in the outflows from the outer cold thin disks, if the transition radius r tr is not very large. For the sources with L bol/L Edd 0.001, the inner small cold disk is evaporated completely in the ADAF and the outer thin accretion disk may be suppressed by the ADAF, which leads to the disappearance of the BLR. The physical implications of this scenario on the double-peaked broad-line emitters are also discussed.
机译:宽线区域(BLR)在许多低发光活性银河原子核(AGN)中消失,其原因仍存在争议。人们认为AGN中的BLR与吸积盘的流出有关。大多数低光度AGN包含对流为主的吸积流(ADAF),它们非常热并且具有正的伯努利参数。因此,ADAF与大量资金外流有关。我们估计了来自ADAF的流出物的冷却,发现这种热流出物中的气体无法始终通过致辐射而得到有效冷却。 ADAF可以与标准磁盘共存,即,内部ADAF在半径R d,tr处连接到外部薄吸积磁盘,其源中的分泌速率略低于临界速率()。对于L bol / L Edd 0.001的ADAF,由于冷凝过程,建议将次级小型内部冷盘与ADAF共存。我们估计流出的康普顿冷却,其中的软种子光子来自外部冷盘或次级内部冷盘。已经发现,如果ADAF到外部冷盘的过渡半径较小,则由于从冷盘发出的软种子光子,远离ADAF的流出气体可以有效地冷却以形成BLR云。 tr = R d,tr /(2GM / c 2)20]或/和次级小型冷盘的光度L sd为0.003 L Edd。如果过渡半径r tr不太大,则仍可以在外部冷薄盘的流出物中形成BLR云。对于L bol / L Edd 0.001的源,内部小冷盘在ADAF中完全蒸发,而外部薄吸积盘可能被ADAF抑制,从而导致BLR消失。还讨论了这种情况对双峰宽带发射器的物理影响。

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