
XMM spectroscopy of the transient supersoft source RX J0513.9 − 6951: probing the dynamic white dwarf photosphere
Author(s) -
McGowan K. E.,
Charles P. A.,
Blustin A. J.,
Livio M.,
O'Donoghue D.,
Heathcote B.
Publication year - 2005
Publication title -
monthly notices of the royal astronomical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.058
H-Index - 383
eISSN - 1365-2966
pISSN - 0035-8711
DOI - 10.1111/j.1365-2966.2005.09566.x
Subject(s) - physics , astrophysics , white dwarf , photosphere , supernova , brightness , photometry (optics) , astronomy , luminosity , spectral line , galaxy , stars
The highly luminous (>10 37 erg s −1 ) supersoft X‐ray sources (SSSs) are believed to be Eddington‐limited accreting white dwarfs undergoing surface hydrogen burning. The current paradigm for SSSs involves thermally unstable mass transfer from a 1–2 M ⊙ companion. However, this model has never been directly confirmed and yet is crucial for the evolution of cataclysmic variables (CVs) in general, and for the establishment of SSSs as progenitors of Type Ia supernovae in particular. The key SSS is RX J0513.9 − 6951 which has recurrent X‐ray outbursts every 100–200 d (lasting for ∼40 d) during which the optical brightness declines by 1 mag. We present the first XMM observations of RX J0513.9 − 6951 through one of its optical low states. Our results show that as the optical low state progresses, the temperature and X‐ray luminosity decrease, behaviour that is anti‐correlated with the optical and ultraviolet (UV) emission. We find that as the optical (and UV) intensity recovers, the radius implied by the spectral fits increases. The high‐resolution spectra show evidence of deep‐absorption features which vary during the optical low state. Our results are consistent with the predictions of the white dwarf photospheric contraction model proposed by Southwell et al.