4.8 Article

AGN as potential factories for eccentric black hole mergers

期刊

NATURE
卷 603, 期 7900, 页码 237-+

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41586-021-04333-1

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资金

  1. European Union [847523, 101029157]
  2. Villum Fonden [29466]
  3. Alfred P. Sloan Foundation
  4. NSF [AST-1715661, AST-2006176, PHY-1911796, PHY-2110060]
  5. Ministry of Education, Science and Culture of Japan [17H01102, 17H06360]
  6. Japan Society for the Promotion of Science (JSPS) KAKENHI [JP21J00794]
  7. Fondecyt Iniciacion [11180005]
  8. Millenium Nucleus [NCN19-058]
  9. BASAL Centro de Excelencia en Astrofisica y Tecnologias Afines (CATA) grant CATA [AFB170002]
  10. NASA [NNX15AB19G]
  11. European Research Council (ERC) under the European Union [638435]
  12. Independent Research Fund Denmark (DFF) [DFF 8021-00400B]
  13. ANID BASAL projects [ACE210002, FB210003]
  14. Marie Curie Actions (MSCA) [101029157] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

New research has found that black hole mergers in active galactic nuclei disk environments can result in an excess of eccentric mergers compared to circular mergers. This phenomenon may be due to frequent interactions between single and binary black holes, as well as small mutual inclinations.
There is some weak evidence that the black hole merger named GW190521 had a non-zero eccentricity(1,2). In addition, the masses of the component black holes exceeded the limit predicted by stellar evolution(3). The large masses can be explained by successive mergers(4,5), which may be efficient in gas disks surrounding active galactic nuclei, but it is difficult to maintain an eccentric orbit all the way to the merger, as basic physics would argue for circularization(6). Here we show that active galactic nuclei disk environments can lead to an excess of eccentric mergers, if the interactions between single and binary black holes are frequent(5) and occur with mutual inclinations of less than a few degrees. We further illustrate that this eccentric population has a different distribution of the inclination between the spin vectors of the black holes and their orbital angular momentum at merger(7), referred to as the spin-orbit tilt, compared with the remaining circular mergers.

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