4.7 Article

Optical counterparts of ULXs in NGC 1672

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出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stac1992

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astrometry; galaxies: individual: NGC 1672; X-rays: binaries

资金

  1. Scientific and Technological Research Council of Turkey(TuBTAK) [119F315, 119F334]

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This study utilizes archival data from various telescopes to investigate the nature of nine candidate ultraluminous X-ray sources in NGC 1672. The study focuses on using precise source positions to identify optical counterparts for these sources. Optical counterparts are found for two of the candidates, while two potential counterparts are found for three other candidates. No optical counterparts are found for the remaining four sources. The study also provides insights into the spectral properties and variability of the sources.
In this work, we deploy archival data from Hubble Space Telescope, Chandra, XMM-Newton, and Swift-XRT, to probe the nature of nine candidate ultraluminous X-ray sources (ULXs) in NGC 1672. Specifically, our study focuses on using the precise source positions obtained via improved astrometry based on Chandra and Hubble Space Telescope observations to search for and identify potential optical counterparts for these ULXs. Unique optical counterparts are identified for two of the ULX candidates, i.e. X2 and X6; for three of the candidates, i.e. X1, X5, and X7, we found two potential counterparts for each source within the respective error radii. No optical counterparts were found for the remaining four sources. The spectral energy distribution of X2 is fitted to a blackbody spectrum with a temperature of similar to 10(4) K and the spectral class of the source is determined to be B7-A3, a supergiant donor star. We used colour-magnitude diagrams to investigate ages of the counterparts. Of all the sources studied, X9 exhibits the most variability whereby the X-ray flux varies by a factor of similar to 50 over a time period spanning 2004-2019, and also traces a partial q-curve-like feature in the hardness-intensity diagram, hinting at possible spectral transitions.

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