Pulse-phase dependence of emission lines in the X-ray pulsar 4U 1626-67

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Abstract

We present results from a pulse-phase-resolved spectroscopy of the complex emission lines around 1 keV in the unique accretion-powered X-ray pulsar 4U 1626-67, using the observation made with XMM-Newton in 2003. In this source, the redshifted and blueshifted emission lines and the linewidths measured earlier with Chandra suggest their accretion-disc origin. Another possible signature of lines produced in the accretion disc can be a modulation of the line strength with the pulse phase. We have found that the line fluxes have pulse-phase dependence, making 4U 1626-67 only the second pulsar after Hercules X-1 to show such variability. The O vii line at 0.568 keV from 4U 1626-67 varied by a factor of ~4, stronger than the continuum variability, which supports the accretion-disc origin. The line flux variability can appear due to variable illumination of the accretion disc by the pulsar or, more likely, a warp-like structure in the accretion disc. We also discuss some further possible diagnostics of the accretion disc in 4U 1626-67 with pulse-phase-resolved emission-line spectroscopy.

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Beri, A., Paul, B., & Dewangan, G. C. (2015). Pulse-phase dependence of emission lines in the X-ray pulsar 4U 1626-67. Monthly Notices of the Royal Astronomical Society, 451(1), 508–516. https://doi.org/10.1093/mnras/stv922

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