Formation of Dark Matter Torii Around Supermassive Black Holes Via The Eccentric Kozai-Lidov Mechanism
arXiv:1409.5432 · doi:10.1088/0004-637X/795/2/102
Abstract
We explore the effects of long term secular perturbations on the distribution of dark matter particles around Supermassive Black Hole (BH) binaries. We show that in the hierarchical (in separation) three-body problem, one of the BHs and a dark matter particle form an inner binary. Gravitational perturbations from the BH companion, on a much wider orbit, can cause the dark matter particle to reach extremely high eccentricities and even get accreted onto the BH, by what is known as the Eccentric Kozai-Lidov (EKL) mechanism. We show that this may produce a torus-like configuration for the dark matter distribution around the less massive member of the BH binary. We first consider an Intermediate BH (IMBH) in the vicinity of our Galactic Center, which may be a relic of a past minor merger. We show that if the IMBH is close enough (i.e., near the stellar disk) the EKL mechanism is very efficient in exciting the eccentricity of dark matter particles in near-polar configurations to extremely high values where they are accreted by the IMBH. We show that this mechanism is even more effective if the central BH grows in mass, where we have assumed adiabatic growth. Since near-polar configurations are disrupted, a torus-like shape is formed. We also show that this behavior is also likely to be relevant for Supermassive BH binaries. We suggest that if the BHs are spinning, the accreted dark matter particles may linger in the ergosphere and thereby may generate self-annihilations and produce an indirect signature of potential interest.
Accepted to ApJ, 11 pages, 9 figures
References in corpus (14)
- A Compact Supermassive Binary Black Hole System
- A Tentative Gamma-Ray Line from Dark Matter Annihilation at the Fermi Large Area Telescope
- Mergers and Obliquities in Stellar Triples
- A Candidate Sub-Parsec Supermassive Binary Black Hole System
- Hot Jupiters in binary star systems
- Chandra unveils a binary Active Galactic Nucleus in Mrk463
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- A close-pair binary in a distant triple supermassive black-hole system
- Kinematics of the old stellar population at the Galactic Center
- Effects of gravitational-wave recoil on the dynamics and growth of supermassive black holes
- Gamma-Rays from Decaying Dark Matter
- Planetary Systems in Binaries. I. Dynamical Classification
- A Displaced Supermassive Black Hole in M87
- Explaining the Orbits of the Galactic Center S-Stars
Cited by in corpus (13)
- Detecting Supermassive Black Hole-Induced Binary Eccentricity Oscillations with LISA
- The Formation of Intermediate Mass Black Holes in Galactic Nuclei
- The Combined Effects of Two-Body Relaxation Processes and the Eccentric Kozai-Lidov Mechanism on the EMRI Rate
- Detecting Kozai-Lidov imprints on the gravitational waves of intermediate-mass black holes in galactic nuclei
- On Socially Distant Neighbors: Using Binaries to Constrain the Density of Objects in the Galactic Center
- A Stability Timescale for Non-Hierarchical Three-Body Systems
- Kepler-1656b's Extreme Eccentricity: Signature of a Gentle Giant
- Probing Intermediate Mass Black Holes in M87 through Multi-Wavelength Gravitational Wave Observations
- Detecting gravitational-wave bursts from black hole binaries in the Galactic Center with LISA
- Binary Natal Kicks in the Galactic Center: X-ray Binaries, Hypervelocity Stars, and Gravitational Waves
- Parameter Distributions of Binary Black Hole Mergers Near Supermassive Black Holes as Seen by Advanced Gravitational Wave Detectors
- Coronal heating problem solution by means of axion origin photons
- Thermomagnetic Ettingshausen-Nernst effect in tachocline, magnetic reconnection phenomenon in lower layers, axion mechanism of solar luminosity variations, coronal heating problem solution and mechanism of ADM variations around BH