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A Potential Cyclotron Line Signature in Low Luminosity X-Ray Sources

Astrophysics 2009-10-22 v1

Abstract

Estimates indicate there may be \simgreat103\simgreat 10^3 low luminosity X-ray pulsars (L\simless1034\romerg  s1L \simless 10^{34} \rom{erg\;s^{-1}}) in the Galaxy undergoing ``low-state'' wind accretion in Be/X-ray binary systems, and 108109\sim 10^8-10^9 isolated neutron stars which may be accreting directly from the interstellar medium. Despite their low effective temperatures (kTe\simless300\romeVkT_e \simless 300 \rom{eV}), low luminosity accreting neutron stars with magnetic fields B(0.77)×1012B \sim (0.7-7) \times 10^{12} G could emit a substantial fraction (0.55%0.5 - 5\%) of their total luminosity in a moderately broadened (E/ΔE24E/\Delta E \sim 2-4) cyclotron {\it emission} line which peaks in the energy range 520\romkeV \sim 5-20\rom{keV}. The bulk of the thermal emission from these stars will be in the extreme ultraviolet/soft X-ray regime, which is subject to strong interstellar absorption and would be difficult to distinguish from spectra of other types of objects. In sharp contrast, the {\it nonthermal} cyclotron component predicted here will not be strongly absorbed, and consequently it may be the only distinguishing signature for the bulk of these low luminosity sources. We propose a search for this cyclotron emission feature in long pointed observations of the newly discovered candidate isolated neutron star MS0317.7-6477, and the Be/X-ray transient

Keywords

Cite

@article{arxiv.astro-ph/9410017,
  title  = {A Potential Cyclotron Line Signature in Low Luminosity X-Ray Sources},
  author = {Robert W. Nelson and John C. L. Wang and E. E. Salpeter and Ira Wasserman},
  journal= {arXiv preprint arXiv:astro-ph/9410017},
  year   = {2009}
}

Comments

Accepted by ApJLett, 10 pages, uuencoded tar-compressed postscript, CITA-94-44