23-28 May 2022
GatherTown and ZOOM
Asia/Tokyo timezone
Workshop has started! The recorded video is available in the GatherTown.

Probing dipole radiation with the low-frequency gravitational-wave observatories

24 May 2022, 13:30
2h
GatherTown and ZOOM

GatherTown and ZOOM

Poster presentation Science cases related to GW at low frequencies Poster session I

Description

Atom-interferometer gravitational-wave (GW) observatory, as a new design of ground-based GW detector for the near future, is sensitive at a relatively low frequency for GW observations. Taking the proposed atom interferometer Zhaoshan Long-baseline Atom Interferometer Gravitation Antenna (ZAIGA), and its illustrative upgrade (Z+) as examples, we investigate how the atom interferometer will complement ground-based laser interferometers in testing the gravitational dipole radiation from binary neutron star (BNS) mergers. A test of such kind is important for a better understanding of the strong equivalence principle laying at the heart of Einstein's general relativity. To obtain a statistically sound result, we sample BNS systems according to their merger rate and population, from which we study the expected bounds on the parameterized dipole radiation parameter $B$. Extracting BNS parameters and the dipole radiation from the combination of ground-based laser interferometers and the atom-interferometer ZAIGA/Z+, we are entitled to obtain tighter bounds on $B$ by a few times to a few orders of magnitude, compared to ground-based laser interferometers alone, ultimately reaching the levels of $|B| < 10^{-9}$ (with ZAIGA) and $|B| < 10^{-10}$ (with Z+).

Primary authors

Junjie Zhao (Beijing Normal University) Dr Lijing Shao Mr Yong Gao Ms Chang Liu Zhoujian Cao Bo-Qiang Ma

Presentation Materials