English

A Fourier Domain "Jerk" Search for Binary Pulsars

High Energy Astrophysical Phenomena 2018-08-15 v1 Instrumentation and Methods for Astrophysics

Abstract

While binary pulsar systems are fantastic laboratories for a wide array of astrophysics, they are particularly difficult to detect. The orbital motion of the pulsar changes its apparent spin frequency over the course of an observation, essentially "smearing" the response of the time series in the Fourier domain. We review the Fourier domain acceleration search (FDAS), which uses a matched filtering algorithm to correct for this smearing by assuming constant acceleration for a small enough portion of the orbit. We discuss the theory and implementation of a Fourier domain "jerk" search, developed as part of the \textsc{PRESTO} software package, which extends the FDAS to account for a linearly changing acceleration, or constant orbital jerk, of the pulsar. We test the performance of our algorithm on archival Green Bank Telescope observations of the globular cluster Terzan~5, and show that while the jerk search has a significantly longer runtime, it improves search sensitivity to binaries when the observation duration is 55 to 15%15\% of the orbital period. Finally, we present the jerk-search-enabled detection of Ter5am (PSR~J1748-2446am), a new highly-accelerated pulsar in a compact, eccentric, and relativistic orbit, with a likely pulsar mass of 1.6490.11+0.037^{+0.037}_{-0.11}\,\msun.

Keywords

Cite

@article{arxiv.1807.07900,
  title  = {A Fourier Domain "Jerk" Search for Binary Pulsars},
  author = {Bridget C. Andersen and Scott M. Ransom},
  journal= {arXiv preprint arXiv:1807.07900},
  year   = {2018}
}

Comments

Submitted to ApJ Letters

R2 v1 2026-06-23T03:08:43.633Z