TY - JOUR
T1 - Analysis of Kozai cycles in equal-mass hierarchical triple supermassive black hole mergers in the presence of a stellar cluster
AU - Hao, Wei
AU - Kouwenhoven, M. B.N.
AU - Spurzem, Rainer
AU - Amaro-Seoane, Pau
AU - Mardling, Rosemary A.
AU - Xu, Xiuming
N1 - Funding Information:
We express our gratitude to the anonymous referee, whose comments and suggestions helped to improve this paper. WH and RS thank Thorsten Naab for helpful discussions, suggestions, and support. MBNK acknowledges support from the National Natural Science Foundation of China (NSFC, grant 11573004). This research was supported by the Research Development Fund (grant RDF-16-01-16) of Xi’an Jiaotong-Liverpool University (XJTLU). RS thanks MBNK and the astronomy team in Suzhou for their hospitality during several visits to XJTLU, during which part of this work was done. RS acknowledges the support of NSFC grants 11721303, 11988101 and 11303039, of the Key International Partnership Program of the Chinese Academy of Sciences (CAS) (No.114A11KYSB20170015), of the Strategic Priority Research Program (Pilot B) ‘Multiwavelength gravitational wave universe’ of Chinese Academy of Sciences (No.XDB23040100), and of Yunnan Academician Workstation of Wang Jingxiu (No. 202005AF150025). The authors gratefully acknowledge the Gauss Centre for Supercomputing e.V. for funding this project by providing part of the computing time used in this project through the John von Neumann Institute for Computing (NIC) on the GCS Supercomputer JUWELS at Jülich Supercomputing Centre (JSC). As computing resources, we also acknowledge the Silk Road Project GPU systems and support by the computing and network department of NAOC. We acknowledge the funds from the ‘European Union NextGenerationEU/PRTR’, Programa de Planes Complementarios I+D+I (ref. ASFAE/2022/014).
Publisher Copyright:
© 2023 The Author(s). Published by Oxford University Press on behalf of Royal Astronomical Society.
PY - 2024/2
Y1 - 2024/2
N2 - Supermassive black holes (SMBHs) play an important role in galaxy evolution. Binary and triple SMBHs can form after galaxy mergers. A third SMBH may accelerate the SMBH merging process, possibly through the Kozai mechanism. We use N-body simulations to analyse oscillations in the orbital elements of hierarchical triple SMBHs with surrounding star clusters in galaxy centres. We find that SMBH triples spend only a small fraction of time in the hierarchical merger phase (i.e. a binary SMBH with a distant third SMBH perturber). Most of the time, the enclosed stellar mass within the orbits of the innermost or the outermost SMBH is comparable to the SMBH masses, indicating that the influence of the surrounding stellar population cannot be ignored. We search for Eccentric Kozai-Lidov (EKL) oscillations for which (i) the eccentricity of the inner binary and inclination are both oscillate and are antiphase or in-phase and (ii) the oscillation period is consistent with EKL time-scale. We find that EKL oscillations are short-lived and rare: The triple SMBH spends around 3 per cent of its time in this phase over the ensemble of simulations, reaching around 8 per cent in the best-case scenario. This suggests that the role of the EKL mechanism in accelerating the SMBH merger process may have been overestimated in previous studies. We follow-up with three-body simulations, using initial conditions extracted from the simulation, and the result can to some extent repeat the observed EKL-like oscillations. This comparison provides clues about why those EKL oscillations with perturbing stars are short-lived.
AB - Supermassive black holes (SMBHs) play an important role in galaxy evolution. Binary and triple SMBHs can form after galaxy mergers. A third SMBH may accelerate the SMBH merging process, possibly through the Kozai mechanism. We use N-body simulations to analyse oscillations in the orbital elements of hierarchical triple SMBHs with surrounding star clusters in galaxy centres. We find that SMBH triples spend only a small fraction of time in the hierarchical merger phase (i.e. a binary SMBH with a distant third SMBH perturber). Most of the time, the enclosed stellar mass within the orbits of the innermost or the outermost SMBH is comparable to the SMBH masses, indicating that the influence of the surrounding stellar population cannot be ignored. We search for Eccentric Kozai-Lidov (EKL) oscillations for which (i) the eccentricity of the inner binary and inclination are both oscillate and are antiphase or in-phase and (ii) the oscillation period is consistent with EKL time-scale. We find that EKL oscillations are short-lived and rare: The triple SMBH spends around 3 per cent of its time in this phase over the ensemble of simulations, reaching around 8 per cent in the best-case scenario. This suggests that the role of the EKL mechanism in accelerating the SMBH merger process may have been overestimated in previous studies. We follow-up with three-body simulations, using initial conditions extracted from the simulation, and the result can to some extent repeat the observed EKL-like oscillations. This comparison provides clues about why those EKL oscillations with perturbing stars are short-lived.
KW - black hole physics
KW - galaxies: kinematics and dynamics
KW - methods: numerical
UR - https://www.scopus.com/pages/publications/85181987445
U2 - 10.1093/mnras/stad3908
DO - 10.1093/mnras/stad3908
M3 - Article
AN - SCOPUS:85181987445
SN - 0035-8711
VL - 527
SP - 10705
EP - 10725
JO - Monthly Notices of the Royal Astronomical Society
JF - Monthly Notices of the Royal Astronomical Society
IS - 4
ER -