English

European Pulsar Timing Array Limits On An Isotropic Stochastic Gravitational-Wave Background

Cosmology and Nongalactic Astrophysics 2015-09-10 v3 Instrumentation and Methods for Astrophysics

Abstract

We present new limits on an isotropic stochastic gravitational-wave background (GWB) using a six pulsar dataset spanning 18 yr of observations from the 2015 European Pulsar Timing Array data release. Performing a Bayesian analysis, we fit simultaneously for the intrinsic noise parameters for each pulsar, along with common correlated signals including clock, and Solar System ephemeris errors, obtaining a robust 95%\% upper limit on the dimensionless strain amplitude AA of the background of A<3.0×1015A<3.0\times 10^{-15} at a reference frequency of 1yr11\mathrm{yr^{-1}} and a spectral index of 13/313/3, corresponding to a background from inspiralling super-massive black hole binaries, constraining the GW energy density to Ωgw(f)h2<1.1×109\Omega_\mathrm{gw}(f)h^2 < 1.1\times10^{-9} at 2.8 nHz. We also present limits on the correlated power spectrum at a series of discrete frequencies, and show that our sensitivity to a fiducial isotropic GWB is highest at a frequency of 5×109\sim 5\times10^{-9}~Hz. Finally we discuss the implications of our analysis for the astrophysics of supermassive black hole binaries, and present 95%\% upper limits on the string tension, Gμ/c2G\mu/c^2, characterising a background produced by a cosmic string network for a set of possible scenarios, and for a stochastic relic GWB. For a Nambu-Goto field theory cosmic string network, we set a limit Gμ/c2<1.3×107G\mu/c^2<1.3\times10^{-7}, identical to that set by the {\it Planck} Collaboration, when combining {\it Planck} and high-\ell Cosmic Microwave Background data from other experiments. For a stochastic relic background we set a limit of Ωgwrelic(f)h2<1.2×109\Omega^\mathrm{relic}_\mathrm{gw}(f)h^2<1.2 \times10^{-9}, a factor of 9 improvement over the most stringent limits previously set by a pulsar timing array.

Keywords

Cite

@article{arxiv.1504.03692,
  title  = {European Pulsar Timing Array Limits On An Isotropic Stochastic Gravitational-Wave Background},
  author = {Lindley Lentati and Stephen R. Taylor and Chiara M. F. Mingarelli and Alberto Sesana and Sotiris A. Sanidas and Alberto Vecchio and R. Nicolas Caballero and K. J. Lee and Rutger van Haasteren and Stanislav Babak and Cees G. Bassa and Patrick Brem and Marta Burgay and David J. Champion and Ismael Cognard and Gregory Desvignes and Jonathan R. Gair and Lucas Guillemot and Jason W. T. Hessels and Gemma H. Janssen and Ramesh Karuppusamy and Michael Kramer and Antoine Lassus and Patrick Lazarus and Kuo Liu and Stefan Osłowski and Delphine Perrodin and Antoine Petiteau and Andrea Possenti and Mark B. Purver and Pablo A. Rosado and Roy Smits and Ben Stappers and Gilles Theureau and Caterina Tiburzi and Joris P. W. Verbiest},
  journal= {arXiv preprint arXiv:1504.03692},
  year   = {2015}
}

Comments

24 pages, 5 tables, 17 figures

R2 v1 2026-06-22T09:16:03.892Z