4.7 Article

HUNTING A WANDERING SUPERMASSIVE BLACK HOLE IN THE M31 HALO HERMITAGE

Journal

ASTROPHYSICAL JOURNAL
Volume 783, Issue 2, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/783/2/87

Keywords

galaxies: dwarf; galaxies: evolution; galaxies: individual (M31); galaxies: interactions; galaxies: kinematics and dynamics; galaxies: structure

Funding

  1. Pre-Strategic Initiatives, University of Tsukuba
  2. MEXT [16002003]
  3. Scientific Research [20224002, 21244013, 18540242, 25400222]
  4. Grants-in-Aid for Scientific Research [21244013] Funding Source: KAKEN

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In the hierarchical structure formation scenario, galaxies enlarge through multiple merging events with less massive galaxies. In addition, the Magorrian relation indicates that almost all galaxies are occupied by a central supermassive black hole (SMBH) of mass 10 (3) times the mass of its spheroidal component. Consequently, SMBHs are expected to wander in the halos of their host galaxies following a galaxy collision, although evidence of this activity is currently lacking. We investigate a current plausible location of an SMBH wandering in the halo of the Andromeda galaxy (M31). According to theoretical studies of N-body simulations, some of the many substructures in the M31 halo are remnants of a minor merger occurring about 1 Gyr ago. First, to evaluate the possible parameter space of the infalling orbit of the progenitor, we perform numerous parameter studies using a graphics processing unit cluster. To reduce uncertainties in the predicted position of the expected SMBH, we then calculate the time evolution of the SMBH in the progenitor dwarf galaxy from N-body simulations using the plausible parameter sets. Our results show that the SMBH lies within the halo (similar to 20-50 kpc from the M31 center), closer to the Milky Way than the M31 disk. Furthermore, the predicted current positions of the SMBH were restricted to an observational field of 0 degrees.6 x 0 degrees.7 in the northeast region of the M31 halo. We also discuss the origin of the infalling orbit of the satellite galaxy and its relationships with the recently discovered vast thin disk plane of satellite galaxies around M31.

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