论文标题

Chandra观察Abell 2261最明亮的集群星系,候选人的候选黑洞宿主

Chandra Observations of Abell 2261 Brightest Cluster Galaxy, a Candidate Host to a Recoiling Black Hole

论文作者

Gultekin, Kayhan, Burke-Spolaor, Sarah, Lauer, Tod R., Lazio, T. Joseph W., Moustakas, Leonidas A., Ogle, Patrick, Postman, Marc

论文摘要

我们使用Chandra X射线观测值来寻找来自Abell 2261(A2261-BCG)中最亮星系中后退黑洞的证据。 A2261-BCG是一个强大的候选黑洞,因为它具有大型,平坦的恒星芯,这是哈勃太空望远镜成像观测值所揭示的。 We took 100-ksec observations with Chandra and combined it with 35 ksec of archival observations to look for low-level accretion onto a black hole of expected mass $M\sim10^{10}\ M_{\scriptscriptstyle \odot}$ that could possibly be located in one of four off-center stellar knots near the galaxy's center or else in the optical center of the galaxy或在无线电排放位置。 We found no X-ray emission arising from a point source in excess of the cluster gas and can place limits on the accretion of any black hole in the central region to a 2-7 keV flux below $4.3 \times 10^{-16}\ \mathrm{erg\ s^{-1}\ cm^{-2}}$, corresponding to a bolometric Eddington fraction of about $ 10^{ - 6} $。因此,要么没有$ 10^{10} \ m _ {\ scriptscriptstyle \ odot} $ Black Hole在A2261-BCG的核心中,要么在低级别上积聚。我们还讨论了集群中X射线发射气体的形态,以及其不对称性如何与大型动态事件一致。

We use Chandra X-ray observations to look for evidence of a recoiling black hole from the brightest cluster galaxy in Abell 2261 (A2261-BCG). A2261-BCG is a strong candidate for a recoiling black hole because of its large, flat stellar core, revealed by Hubble Space Telescope imaging observations. We took 100-ksec observations with Chandra and combined it with 35 ksec of archival observations to look for low-level accretion onto a black hole of expected mass $M\sim10^{10}\ M_{\scriptscriptstyle \odot}$ that could possibly be located in one of four off-center stellar knots near the galaxy's center or else in the optical center of the galaxy or in the location of radio emission. We found no X-ray emission arising from a point source in excess of the cluster gas and can place limits on the accretion of any black hole in the central region to a 2-7 keV flux below $4.3 \times 10^{-16}\ \mathrm{erg\ s^{-1}\ cm^{-2}}$, corresponding to a bolometric Eddington fraction of about $10^{-6}$. Thus there is either no $10^{10}\ M_{\scriptscriptstyle \odot}$ black hole in the core of A2261-BCG, or it is accreting at a low level. We also discuss the morphology of the X-ray emitting gas in the cluster and how its asymmetry is consistent with a large dynamic event.

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