English

A broadband X-ray study of the asynchronous polar: CD Ind

High Energy Astrophysical Phenomena 2022-03-07 v1

Abstract

A simultaneous broadband analysis of X-ray data obtained with XMM-Newton and NuSTAR observatories for the asynchronous polar source CD Ind is presented. The spin folded lightcurve in soft 0.3-3.0 keV band shows single broad hump-like structure superimposed with occasional narrow dips, indicating a single-pole accretion model with a complex intrinsic absorber. Lack of strong modulation in folded lightcurve above 3 keV reveals that emission from corresponding zone of post-shock region (PSR) remains in view throughout the spin phase. The broadband spectrum is modelled with a three-component absorbed plasma emission model and absorbed isobaric cooling flow model, both of which fit the data well with similar statistical significance. Presence of partial covering absorber is evident in the spectra with equivalent column density 7×1022  cm2\sim7\times10^{22}\;\text{cm}^{-2} and a covering fraction of 25%\sim 25\%. Strong ionised oxygen Kα_{\alpha} line emission is detected in the spectra. We notice spectral variability during spin phase 0.75-1.05, when there is a considerable increase in column density of overall absorber (from 1×1020  cm2\sim 1 \times 10^{20}\;\text{cm}^{-2} to 9×1020  cm2\sim 9 \times 10^{20}\;\text{cm}^{-2}). We required at least three plasma temperatures to describe the multi-temperature nature of the PSR. The shock temperature 43.33.4+3.8\sim 43.3_{-3.4}^{+3.8} keV, represented by the upper temperature of the cooling flow model, implies a white dwarf mass of 0.870.03+0.04  M\sim 0.87^{+0.04}_{-0.03}\;M_{\odot}. The iron Kα_{\alpha} line complex shows a strong He-like and a weak neutral fluorescence line. We could not unambiguously detect the presence of Compton reflection in the spectra, which is probably very small and signifying a tall shock height.

Keywords

Cite

@article{arxiv.2201.12334,
  title  = {A broadband X-ray study of the asynchronous polar: CD Ind},
  author = {Anirban Dutta and Vikram Rana},
  journal= {arXiv preprint arXiv:2201.12334},
  year   = {2022}
}

Comments

10pages, 7figures, 3tables, accepted for publication in Monthly Notices of the Royal Astronomical Society (MNRAS)