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COBIPULSE: A Systematic Search for Compact Binary Millisecond Pulsars

High Energy Astrophysical Phenomena 2024-12-06 v1

Abstract

We report here the results obtained from a systematic optical photometric survey aimed at finding new compact binary millisecond pulsars (also known as "spiders"): the COmpact BInary PULsar SEarch (COBIPULSE). We acquired multi-band optical images over one year around 3333 unidentified Fermi-LAT sources, selected as pulsar candidates based on their curved GeV spectra and steady γ\gamma-ray emission. We present the discovery of four optical variables coinciding with the Fermi sources 3FGL J0737.2-3233, 3FGL J2117.6++3725 (two systems in this field) and 3FGL J2221.6++6507, which we propose as new candidate spider systems. Indeed, they all show optical flux modulation consistent with orbital periods of 0.3548(5) d0.3548(5) \ \mathrm{d}, 0.25328(6) d0.25328(6) \ \mathrm{d}, 0.441961(2) d0.441961(2) \ \mathrm{d}, and 0.165(4) d0.165(4) \ \mathrm{d}, respectively, with amplitudes 0.3 mag\gtrsim 0.3 \ \mathrm{mag} and colors compatible with companion star temperatures of 50005000--6000 K6000 \ \mathrm{K}. These properties are consistent with the "redback" sub-class of spider pulsars. If confirmed as a millisecond pulsar, 3FGL J0737.2-3233 will be the closest known spider to Earth (D=65920+16 pcD=659_{-20}^{+16} \ \mathrm{pc}, from Gaia-DR3 parallax). We searched and did not find any X-ray sources matching our four candidates, placing 3σ3\sigma upper limits of 1031\sim10^{31}--1032 erg s110^{32} \ \mathrm{erg} \ \mathrm{s}^{-1} (0.30.3--10 keV10 \ \mathrm{keV}) on their soft X-ray luminosities. We also present and discuss other multi-wavelength information on our spider candidates, from infrared to X-rays.

Keywords

Cite

@article{arxiv.2410.18199,
  title  = {COBIPULSE: A Systematic Search for Compact Binary Millisecond Pulsars},
  author = {Marco Turchetta and Manuel Linares and Karri Koljonen and Jorge Casares and Paulo A. Miles-Páez and Pablo Rodríguez-Gil and Tariq Shahbaz and Jordan A. Simpson},
  journal= {arXiv preprint arXiv:2410.18199},
  year   = {2024}
}

Comments

38 pages, 93 figures, 4 tables. This paper has been accepted for publication in ApJ

R2 v1 2026-06-28T19:33:23.734Z