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A Detection of Red Noise in PSR J1824-2452A and Projections for PSR B1937+21 Using NICER X-Ray Timing Data

  • Jeffrey S. Hazboun
  • , Jack Crump
  • , Andrea N. Lommen
  • , Sergio Montano
  • , Samantha J.H. Berry
  • , Jesse Zeldes
  • , Elizabeth Teng
  • , Paul S. Ray
  • , Matthew Kerr
  • , Zaven Arzoumanian
  • , Slavko Bogdanov
  • , Julia Deneva
  • , Natalia Lewandowska
  • , Craig B. Markwardt
  • , Scott Ransom
  • , Teruaki Enoto
  • , Kent S. Wood
  • , Keith C. Gendreau
  • , David A. Howe
  • , Aditya Parthasarathy
  • University of Washington
  • Haverford College
  • Bryn Mawr College
  • Northwestern University
  • Naval Research Laboratory
  • NASA Goddard Space Flight Center
  • Columbia University
  • George Mason University
  • National Science Foundation
  • Kyoto University
  • National Institute of Standards and Technology
  • University of Colorado Boulder
  • Max Planck Institute for Radio Astronomy

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

We have used X-ray data from the Neutron Star Interior Composition Explorer (NICER) to search for long-timescale temporal correlations ("red noise") in the pulse times of arrival (TOAs) from the millisecond pulsars PSR J1824-2452A and PSR B1937+21. These data more closely track intrinsic noise because X-rays are unaffected by the radio-frequency-dependent propagation effects of the interstellar medium. Our search yields strong evidence (natural log Bayes factor of 9.634 ± 0.016) for red noise in PSR J1824-2452A, but the search is inconclusive for PSR B1937+21. In the interest of future X-ray missions, we devise and implement a method to simulate longer and higher-precision X-ray data sets to determine the timing baseline necessary to detect red noise. We find that the red noise in PSR B1937+21 can be reliably detected in a 5 yr mission with a TOA error of 2 μs and an observing cadence of 20 observations per month compared to the 5 μs TOA error and 11 observations per month that NICER currently achieves in PSR B1937+21. We investigate detecting red noise in PSR B1937+21 with other combinations of observing cadences and TOA errors. We also find that time-correlated red noise commensurate with an injected stochastic gravitational-wave background having an amplitude of A GWB = 2 × 10-15 and spectral index of timing residuals of γ GWB = 13/3 can be detected in a pulsar with similar TOA precision to PSR B1937+21. This is with no additional red noise in a 10 yr mission that observes the pulsar 15 times per month and has an average TOA error of 1 μs.

Original languageEnglish
Article number67
JournalAstrophysical Journal
Volume928
Issue number1
DOIs
StatePublished - Mar 1 2022

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