English

European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries

Cosmology and Nongalactic Astrophysics 2015-12-09 v2 Astrophysics of Galaxies Instrumentation and Methods for Astrophysics General Relativity and Quantum Cosmology

Abstract

We have searched for continuous gravitational wave (CGW) signals produced by individually resolvable, circular supermassive black hole binaries (SMBHBs) in the latest EPTA dataset, which consists of ultra-precise timing data on 41 millisecond pulsars. We develop frequentist and Bayesian detection algorithms to search both for monochromatic and frequency-evolving systems. None of the adopted algorithms show evidence for the presence of such a CGW signal, indicating that the data are best described by pulsar and radiometer noise only. Depending on the adopted detection algorithm, the 95\% upper limit on the sky-averaged strain amplitude lies in the range 6×1015<A<1.5×10146\times 10^{-15}<A<1.5\times10^{-14} at 5nHz<f<7nHz5{\rm nHz}<f<7{\rm nHz}. This limit varies by a factor of five, depending on the assumed source position, and the most constraining limit is achieved towards the positions of the most sensitive pulsars in the timing array. The most robust upper limit -- obtained via a full Bayesian analysis searching simultaneously over the signal and pulsar noise on the subset of ours six best pulsars -- is A1014A\approx10^{-14}. These limits, the most stringent to date at f<10nHzf<10{\rm nHz}, exclude the presence of sub-centiparsec binaries with chirp mass Mc>109\cal{M}_c>10^9M_\odot out to a distance of about 25Mpc, and with Mc>1010\cal{M}_c>10^{10}M_\odot out to a distance of about 1Gpc (z0.2z\approx0.2). We show that state-of-the-art SMBHB population models predict <1%<1\% probability of detecting a CGW with the current EPTA dataset, consistent with the reported non-detection. We stress, however, that PTA limits on individual CGW have improved by almost an order of magnitude in the last five years. The continuing advances in pulsar timing data acquisition and analysis techniques will allow for strong astrophysical constraints on the population of nearby SMBHBs in the coming years.

Keywords

Cite

@article{arxiv.1509.02165,
  title  = {European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries},
  author = {Stanislav Babak and Antoine Petiteau and Alberto Sesana and Patrick Brem and Pablo A. Rosado and Stephen R. Taylor and Antoine Lassus and Jason W. T. Hessels and Cees G. Bassa and Marta Burgay and R. Nicolas Caballero and David J. Champion and Ismael Cognard and Gregory Desvignes and Jonathan R. Gair and Lucas Guillemot and Gemma H. Janssen and Ramesh Karuppusamy and Michael Kramer and Patrick Lazarus and K. J. Lee and Lindley Lentati and Kuo Liu and Chiara M. F. Mingarelli and Stefan Oslowski and Delphine Perrodin and Andrea Possenti and Mark B. Purver and Sotiris Sanidas and Roy Smits and Ben Stappers and Gilles Theureau and Caterina Tiburzi and Rutger van Haasteren and Alberto Vecchio and Joris P. W. Verbiest},
  journal= {arXiv preprint arXiv:1509.02165},
  year   = {2015}
}

Comments

16 pages, 11 figures, accepted for publication in MNRAS