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Orbits Around Black Holes in Triaxial Nuclei

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arxiv 1005.0040 v2 pith:NZSRMOUK submitted 2010-05-01 astro-ph.GA

classification astro-ph.GA
keywords orbitspyramidtimeeccentricitylimitangularaxisblack
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We discuss the properties of orbits within the influence sphere of a supermassive black hole (BH), in the case that the surrounding star cluster is nonaxisymmetric. There are four major orbit families; one of these, the pyramid orbits, have the interesting property that they can approach arbitrarily closely to the BH. We derive the orbit-averaged equations of motion and show that in the limit of weak triaxiality, the pyramid orbits are integrable: the motion consists of a two-dimensional libration of the major axis of the orbit about the short axis of the triaxial figure, with eccentricity varying as a function of the two orientation angles, and reaching unity at the corners. Because pyramid orbits occupy the lowest angular momentum regions of phase space, they compete with collisional loss cone repopulation and with resonant relaxation in supplying matter to BHs. General relativistic advance of the periapse dominates the precession for sufficiently eccentric orbits, and we show that relativity imposes an upper limit to the eccentricity: roughly the value at which the relativistic precession time is equal to the time for torques to change the angular momentum. We argue that this upper limit to the eccentricity should apply also to evolution driven by resonant relaxation, with potentially important consequences for the rate of extreme-mass-ratio inspirals in low-luminosity galaxies. In giant galaxies, we show that capture of stars on pyramid orbits can dominate the feeding of BHs, at least until such a time as the pyramid orbits are depleted; however this time can be of order a Hubble time.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The evolution of a supermassive binary black hole in an non-spherical nuclear star cluster

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    The m=2 quadrupole tidal field of a non-spherical nuclear star cluster, with Einstein precession, can drive a supermassive black hole binary to near-unity eccentricity and trigger gravitational-wave circularization wi...

  2. Probing dense environments around Sgr A* with S-stars dynamics

    astro-ph.GA 2025-09 unverdicted novelty 5.0 of 10

    Models apsidal precession and dynamical friction from extended matter to extend GRAVITY constraints on boson clouds around Sgr A* and assess impacts on S-star orbits.

  3. Unveiling the properties of galaxy cores excavated by supermassive black hole binaries with SHARP

    astro-ph.GA 2026-06 unverdicted novelty 4.0 of 10

    Next-generation IFU instruments could detect core scouring and tangential anisotropy from MBH binaries up to z~0.14 for ~150 pc cores and higher redshifts for larger cores, expanding searchable volume by 30-40 times i...

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