This paper describes the first all-sky search for long-duration, quasimonochromatic gravitational-wave signals emitted by ultralight scalar boson clouds around spinning black holes using data from the third observing run of Advanced LIGO. We analyze the frequency range from 20 to 610 Hz, over a small frequency derivative range around zero, and use multiple frequency resolutions to be robust towards possible signal frequency wanderings. Outliers from this search are followed up using two different methods, one more suitable for nearly monochromatic signals, and the other more robust towards frequency fluctuations. We do not find any evidence for such signals and set upper limits on the signal strain amplitude, the most stringent being ≈10-25 at around 130 Hz. We interpret these upper limits as both an "exclusion region"in the boson mass/black hole mass plane and the maximum detectable distance for a given boson mass, based on an assumption of the age of the black hole/boson cloud system.

Abbott, R., Abe, H., Acernese, F., Ackley, K., Adhikari, N., Adhikari, R., et al. (2022). All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data. PHYSICAL REVIEW D, 105(10) [10.1103/PhysRevD.105.102001].

All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data

Barbieri C.;Buscicchio R.;Carpinelli M.;Colombo A.;Colpi M.;Giacomazzo B.;Renzini A.;Rozza D.;Salafia O. S.;
2022

Abstract

This paper describes the first all-sky search for long-duration, quasimonochromatic gravitational-wave signals emitted by ultralight scalar boson clouds around spinning black holes using data from the third observing run of Advanced LIGO. We analyze the frequency range from 20 to 610 Hz, over a small frequency derivative range around zero, and use multiple frequency resolutions to be robust towards possible signal frequency wanderings. Outliers from this search are followed up using two different methods, one more suitable for nearly monochromatic signals, and the other more robust towards frequency fluctuations. We do not find any evidence for such signals and set upper limits on the signal strain amplitude, the most stringent being ≈10-25 at around 130 Hz. We interpret these upper limits as both an "exclusion region"in the boson mass/black hole mass plane and the maximum detectable distance for a given boson mass, based on an assumption of the age of the black hole/boson cloud system.
Articolo in rivista - Articolo scientifico
Physics
English
9-mag-2022
2022
105
10
102001
none
Abbott, R., Abe, H., Acernese, F., Ackley, K., Adhikari, N., Adhikari, R., et al. (2022). All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data. PHYSICAL REVIEW D, 105(10) [10.1103/PhysRevD.105.102001].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/392550
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