The International Pulsar Timing Array second data release: Search for an isotropic Gravitational Wave Background
Abstract
We searched for an isotropic stochastic gravitational wave background in the second data release of the International Pulsar Timing Array, a global collaboration synthesizing decadal-length pulsar-timing campaigns in North America, Europe, and Australia. In our reference search for a power law strain spectrum of the form , we found strong evidence for a spectrally-similar low-frequency stochastic process of amplitude and spectral index , where the uncertainties represent 95\% credible regions, using information from the auto- and cross-correlation terms between the pulsars in the array. For a spectral index of , as expected from a population of inspiralling supermassive black hole binaries, the recovered amplitude is . Nonetheless, no significant evidence of the Hellings-Downs correlations that would indicate a gravitational-wave origin was found. We also analyzed the constituent data from the individual pulsar timing arrays in a consistent way, and clearly demonstrate that the combined international data set is more sensitive. Furthermore, we demonstrate that this combined data set produces comparable constraints to recent single-array data sets which have more data than the constituent parts of the combination. Future international data releases will deliver increased sensitivity to gravitational wave radiation, and significantly increase the detection probability.
Cite
@article{arxiv.2201.03980,
title = {The International Pulsar Timing Array second data release: Search for an isotropic Gravitational Wave Background},
author = {J. Antoniadis and Z. Arzoumanian and S. Babak and M. Bailes and A. -S. Bak Nielsen and P. T. Baker and C. G. Bassa and B. Becsy and A. Berthereau and M. Bonetti and A. Brazier and P. R. Brook and M. Burgay and S. Burke-Spolaor and R. N. Caballero and J. A. Casey-Clyde and A. Chalumeau and D. J. Champion and M. Charisi and S. Chatterjee and S. Chen and I. Cognard and J. M. Cordes and N. J. Cornish and F. Crawford and H. T. Cromartie and K. Crowter and S. Dai and M. E. DeCesar and P. B. Demorest and G. Desvignes and T. Dolch and B. Drachler and M. Falxa and E. C. Ferrara and W. Fiore and E. Fonseca and J. R. Gair and N. Garver-Daniels and B. Goncharov and D. C. Good and E. Graikou and L. Guillemot and Y. J. Guo and J. S. Hazboun and G. Hobbs and H. Hu and K. Islo and G. H. Janssen and R. J. Jennings and A. D. Johnson and M. L. Jones and A. R. Kaiser and D. L. Kaplan and R. Karuppusamy and M. J. Keith and L. Z. Kelley and M. Kerr and J. S. Key and M. Kramer and M. T. Lam and W. G. Lamb and T. J. W. Lazio and K. J. Lee and L. Lentati and K. Liu and J. Luo and R. S. Lynch and A. G. Lyne and D. R. Madison and R. A. Main and R. N. Manchester and A. McEwen and J. W. McKee and M. A. McLaughlin and M. B. Mickaliger and C. M. F. Mingarelli and C. Ng and D. J. Nice and S. Os lowski and A. Parthasarathy and T. T. Pennucci and B. B. P. Perera and D. Perrodin and A. Petiteau and N. S. Pol and N. K. Porayko and A. Possenti and S. M. Ransom and P. S. Ray and D. J. Reardon and C. J. Russell and A. Samajdar and L. M. Sampson and S. Sanidas and J. M. Sarkissian and K. Schmitz and L. Schult and A. Sesana and G. Shaifullah and R. M. Shannon and B. J. Shapiro-Albert and X. Siemens and J. Simon and T. L. Smith and L. Speri and R. Spiewak and I. H. Stairs and B. W. Stappers and D. R. Stinebring and J. K. Swiggum and S. R. Taylor and G. Theureau and C. Tiburzi and M. Vallisneri and E. van der Wateren and A. Vecchio and J. P. W. Verbiest and S. J. Vigeland and H. Wahl and J. B. Wang and J. Wang and L. Wang and C. A. Witt and S. Zhang and X. J. Zhu},
journal= {arXiv preprint arXiv:2201.03980},
year = {2022}
}
Comments
17 pages, 12 figures, accepted in MNRAS