Constraints on dark photon dark matter using data from LIGO's and Virgo's third observing run
The LIGO Scientific Collaboration, the Virgo Collaboration, and the, KAGRA Collaboration: R. Abbott, T. D. Abbott, F. Acernese, K. Ackley, C., Adams, N. Adhikari, R. X. Adhikari, V. B. Adya, C. Affeldt, D. Agarwal, M., Agathos, K. Agatsuma, N. Aggarwal, O. D. Aguiar, L. Aiello

TL;DR
This paper searches for dark photon dark matter using LIGO and Virgo data, setting new upper limits on the coupling strength in the mass range of 10^{-14} to 10^{-11} eV, with no detection found.
Contribution
The study introduces two novel analysis methods for detecting dark photon dark matter using gravitational-wave detector data, improving existing constraints significantly.
Findings
No evidence of dark photon dark matter was found.
Established the most stringent upper limits on dark photon coupling in the specified mass range.
Improved constraints by a factor of 100 over previous direct detection experiments.
Abstract
We present a search for dark photon dark matter that could couple to gravitational-wave interferometers using data from Advanced LIGO and Virgo's third observing run. To perform this analysis, we use two methods, one based on cross-correlation of the strain channels in the two nearly aligned LIGO detectors, and one that looks for excess power in the strain channels of the LIGO and Virgo detectors. The excess power method optimizes the Fourier Transform coherence time as a function of frequency, to account for the expected signal width due to Doppler modulations. We do not find any evidence of dark photon dark matter with a mass between eV/, which corresponds to frequencies between 10-2000 Hz, and therefore provide upper limits on the square of the minimum coupling of dark photons to baryons, i.e. dark matter. For the…
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