Numerical simulations find that black-hole wandering in FDM soliton cores produces intermittent accretion, limiting durable boosts except for ~10^7 solar mass seeds in low-sound-speed gas.
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2 Pith papers cite this work. Polarity classification is still indexing.
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Pith papers citing it
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astro-ph.CO 2years
2026 2representative citing papers
A dipole (lopsided) oscillation of the soliton, not ordinary drag, drives stone-skipping black-hole orbits, and the effect behaves like a forced resonant oscillator.
citing papers explorer
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Variability in Supermassive Black-Hole Accretion Rates in Fuzzy Dark Matter Cores due to Black-Hole Wandering
Numerical simulations find that black-hole wandering in FDM soliton cores produces intermittent accretion, limiting durable boosts except for ~10^7 solar mass seeds in low-sound-speed gas.
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Stone Skipping Black Holes in Ultralight Dark Matter Solitons
A dipole (lopsided) oscillation of the soliton, not ordinary drag, drives stone-skipping black-hole orbits, and the effect behaves like a forced resonant oscillator.