23–28 Aug 2026
Asia/Shanghai timezone

Ultralight Boson Ionization from Comparable-Mass Binaries

27 Aug 2026, 15:00
15m

Speaker

Yuhao Guo

Description

Detection of gravitational waves enables probes of environmental effects around compact binaries. Ultralight bosons, well motivated in particle physics and capable of forming core-like dark matter structures, induce environmental dynamics that differ qualitatively from
those produced by stars or particle dark matter. For comparable-mass binaries, such bosons can form gravitationally bound states analogous to molecules once the binary separation falls below the characteristic wavelength of the bound states, with an inner region co-moving with the binary. We combine numerical simulations and a semi-analytic framework to characterize the structure and ionization of these gravitational molecules. We determine the extent of the co-moving region and compute the ionization flux driven by orbital motion over a range of eccentricities. Using these results, we estimate the backreaction on the binary orbital evolution and identify a new environmental effect: eccentricity-induced ionization of the co-moving component leads to efficient circularization. We further show that this molecular phase can be astrophysically viable and significantly modify the stochastic gravitational wave background from supermassive black hole binaries.

Authors

Mr Lihang Zhou Taishi Ikeda Prof. Vitor cardoso (Center of Gravity, Niels Bohr Institute, Blegdamsvej 17, 2100 Copenhagen, Denmar) Yifan Chen (Tsung-Dao Lee Institute) Yuhao Guo Zhen Zhong

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