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Yulia Solovyeva

Publications and source records attributed to Yulia Solovyeva.

2 recordsLinked to original sources

NGC 5474 X-1: a neutron star ULX in an old stellar cluster?

We present the optical and X-ray study of the ultraluminous X-ray source (ULX) NGC 5474 X-1. The X-ray spectrum taken during the bright state of the source ($L_X \sim 2\times10^{40}$ egs/s) shows signatures of a broad absorption line at $\simeq 8$ keV which may be a cyclotron resonant scattering feature. This implies that this system may host a neutron star with a magnetic field $\sim 10^{12}$ G. The first observation of this area with the Hubble Space Telescope (HST) carried out 14 months later revealed that the source was bright in the optical range as well. The subsequent observations have shown that the source faded in both ranges (more than $2.8^m$ in the U band and by a factor of 50-100 in X-rays) and has never become bright again. Deeper HST observations made it possible to impose constraints on the donor star spectral class and mass ($<\,7$ M$_\odot$), as well as to identify a stellar cluster of about 1 Gyr, the centre of which is located at a projected distance of $\simeq 2$ pc from NGC 5474 X-1. The ULX can be a member of this old cluster, however, the presence of stars with ages of $\sim10$ Myr within 300 pc around the ULX does not completely exclude the possibility that it is just an accidental projection.

astro-ph.HE

Optical Counterpart to the Ultraluminous X-Ray Source in the UGC6456 Galaxy

We report the identification of the optical counterpart to the transient ultraluminuos X-ray source in the blue dwarf galaxy UGC6456 (VII Zw 403). The source is highly variable in both the X-ray (more 100 times, 0.3-10 keV) and optical (more 3 times, V band) ranges. The peak X-ray luminosity of UGC6456 ULX exceeds $10^{40}$ erg/s; the absolute magnitude when the source is optically bright is M$_V = -8.24\pm0.11$, which makes this source one of the brightest ULXs in the optical range. We found a correlation between the optical and X-ray fluxes (with a coefficient of $0.9\pm 0.3$), which may indicate that the optical emission is produced by re-processing of the X-rays in outer parts of the optically-thick wind coming from the supercritical accretion disk. Optical spectra of UGC6456 ULX show broad and variable hydrogen and helium emission lines, which also confirms the presence of the strong wind.

astro-ph.HE