Precision Ephemerides for Gravitational-wave Searches – IV. Corrected and refined ephemeris for Scorpius X-1

Author:

Killestein T L1ORCID,Mould M2ORCID,Steeghs D13ORCID,Casares J45ORCID,Galloway D K367,Whelan J T8

Affiliation:

1. Department of Physics, University of Warwick , Gibbet Hill Road, Coventry CV4 7AL, UK

2. School of Physics and Astronomy & Institute for Gravitational Wave Astronomy, University of Birmingham , Birmingham B15 2TT, UK

3. OzGRav-Monash, School of Physics and Astronomy, Monash University , Victoria 3800, Australia

4. Instituto de Astrofísica de Canarias , E-38205 La Laguna, Tenerife, Spain

5. Departamento de Astrofísica, Universidad de La Laguna , E-38206 La Laguna, Tenerife, Spain

6. School of Physics and Astronomy, Monash University , Victoria 3800, Australia

7. Institute for Globally Distributed Open Research and Education (IGDORE) , Sweden

8. School of Mathematical Sciences and Center for Computational Relativity and Gravitation , Rochester Institute of Technology, Rochester, NY 14623, USA

Abstract

ABSTRACTLow-mass X-ray binaries have long been theorized as potential sources of continuous gravitational-wave radiation, yet there is no observational evidence from recent LIGO/Virgo observing runs. Even for the theoretically ‘loudest’ source, Sco X-1, the upper limit on gravitational-wave strain has been pushed ever lower. Such searches require precise measurements of the source properties for sufficient sensitivity and computational feasibility. Collating over 20 yr of high-quality spectroscopic observations of the system, we present a precise and comprehensive ephemeris for Sco X-1 through radial velocity measurements, performing a full homogeneous re-analysis of all relevant data sets and correcting previous analyses. Our Bayesian approach accounts for observational systematics and maximizes not only precision, but also the fidelity of uncertainty estimates – crucial for informing principled continuous-wave searches. Our extensive data set and analysis also enables us to construct the highest signal-to-noise ratio, highest resolution phase-averaged spectrum of a low-mass X-ray binary to date. Doppler tomography reveals intriguing transient structures present in the accretion disc and flow driven by modulation of the accretion rate, necessitating further characterization of the system at high temporal and spectral resolution. Our ephemeris corrects and supersedes previous ephemerides, and provides a factor three reduction in the number of templates in the search space, facilitating precision searches for continuous gravitational-wave emission from Sco X-1 throughout the upcoming LIGO/Virgo/KAGRA O4 observing run and beyond.

Funder

ESO

Instituto de Astrofísica de Canarias

Science and Technology Facilities Council

ERC

Cariplo Foundation

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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