X-ray, optical and infrared investigation of the candidate Supergiant Fast X-ray Transient IGR J18462-0223
V. Sguera, S. P. Drave, L. Sidoli, N. Masetti, R. Landi, A. J. Bird,, A. Bazzano

TL;DR
This study provides a comprehensive multi-wavelength analysis of the candidate Supergiant Fast X-ray Transient IGR J18462-0223, revealing its X-ray flaring behavior, upper limits on emission, and identifying a potential heavily absorbed supergiant companion.
Contribution
First detailed broad-band X-ray and optical/NIR investigation of IGR J18462-0223, including discovery of fast X-ray flares and potential orbital period, advancing understanding of SFXT properties.
Findings
Detected three fast X-ray flares with durations 1-12 hours.
Established upper limits on soft and hard X-ray emission.
Identified a heavily absorbed supergiant candidate counterpart.
Abstract
We report on a broad-band X-ray study (0.5-60 keV) of the poorly known candidate Supergiant Fast X-ray Transient (SFXT) IGR J18462-0223, and on optical and near-infrared (NIR) followup observations of field objects. The out-of-outburst X-ray state has been investigated for the first time with archival INTEGRAL/IBIS, ASCA, Chandra and Swift/XRT observations. This allowed us to place stringent 3 sigma upper limits on the soft (0.5-10 keV) and hard (18-60 keV) X-ray emission of 2.9x10^-13 erg cm^-2 s^-1 and 8x10^-12 erg cm^-2 s^-1, respectively; the source was also detected during an intermediate soft X-ray state with flux equal to 1.6x10^-11 erg cm^-2 s^-1 (0.5-10 keV). In addition, we report on the INTEGRAL/IBIS discovery of three fast hard X-ray flares (18-60 keV) having a duration in the range 1-12 hours: the flaring behavior was also investigated in soft X-rays (3-10 keV) with…
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