Probing an Intermediate-Mass Black Hole Companion of Sagittarius A* with Pulsar Timing
Zexin Hu, Lijing Shao
astro-ph.HE, astro-ph.GA, gr-qc
Submitted: 2026-07-27
Comments: 12 pages, 14 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: An intermediate-mass black hole (IMBH) hidden in our Galactic Center (GC) may explain the puzzling observations of the stellar distribution around Sagittarius A* (Sgr A*), the supermassive black hole
Terminology
Abstract
An intermediate-mass black hole (IMBH) hidden in our Galactic Center (GC) may explain the puzzling observations of the stellar distribution around Sagittarius A* (Sgr A*), the supermassive black hole (SMBH) in the GC. Future observations with the next-generation radio telescopes, such as the SKA, are promising to discover pulsars orbiting around Sgr A*, and thus provide the possibility of constraining the hidden IMBH with pulsar timing. We study the detectability of a third-body, the IMBH, in the pulsar-SMBH system based on radio timing observation. We find that the pulsar-SMBH system is very sensitive to such a third-body perturbation and can be used to put stringent constraints on the existence of the IMBH. Even under strong perturbations caused by the complex GC astrophysical environments, timing observation will still complement the existing observational constraints.
Sources
- The complex kinematics of the young stars orbiting the supermassive black hole in the Galactic center can be explained by the presence of an intermediate mass companion of Sgr A
- Constraining the Binarity of Massive Black Holes in the Galactic Center and Some Nearby Galaxies via Pulsar Timing Array Observations of Gravitational Waves
- Frame dragging and other precessional effects in black hole-pulsar binaries
- Strong-Field Tests of Gravity Using Pulsars and Black Holes
- Prospects for Constraining the Yukawa Gravity with Pulsars around Sagittarius A*
- Probing the vector charge of Sagittarius A* with pulsar timing
- Testing space-time geometries and theories of gravity at the Galactic Center with pulsar's time delay
- Measuring the Spin of the Galactic Center Supermassive Black Hole with Two Pulsars
- Fundamental Physics with Pulsars around Sagittarius A$^\star$
- Pulsar timing in the Galactic Center
- Detecting ultralight dark matter in the Galactic Center with pulsars around Sgr A*
- A Realistic Pulsar -- Supermassive Black Hole Timing Model
- Granular mass perturbations on the pulsar - supermassive black hole system
- Galactic Centre Pulsars with the SKAO
- An 86-GHz search for Pulsars in the Galactic Center with the Atacama Large Millimeter/submillimeter Array
- A search for pulsars around Sgr A* in the first Event Horizon Telescope dataset
- Testing the strong equivalence principle with the triple pulsar PSR J0337+1715
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