4XMM J181330.1-175110: a new supergiant fast X-ray transient
arXiv:2503.04009 · doi:10.1051/0004-6361/202553768
Abstract
Supergiant Fast X-ray Transients (SFXT) are a sub-class of High Mass X-ray Binaries (HMXB) in which a compact object accretes part of the clumpy wind of the blue supergiant companion, triggering a series of brief, X-ray flares lasting a few kiloseconds. Currently, only about fifteen SFXTs are known. The EXTraS catalog provides the timing signatures of every source observed by the EPIC instrument on-board XMM-Newton. Among the most peculiar sources, in terms of variability, we selected 4XMM J181330.1-17511 (J1813). We analyzed all publicly available X-ray data pointed at the J1813 position to determine the source's duty cycle and to provide a comprehensive description of its timing and spectral behavior during its active phase. Additionally, we searched for the optical and infrared counterpart of the X-ray source in public databases and fitted its Spectral Energy Distribution (SED). The optical-to-MIR SED of J1813 is consistent with a highly-absorbed (A) B0 star at 10 kpc. During its X-ray active phase, the source is characterized by continuous thousands seconds-long flares with peak luminosities (2-12 keV) ranging from to erg s. Its X-ray spectrum is consistent with a high-absorbed power-law model with N cm and . No spectral variability was observed as a function of time or flux. J1813 is in a quiescent state 60\% of the time, with an upper-limit luminosity of erg s (at 10 kpc), implying an observed long-term X-ray flux variability 500. The optical counterpart alone indicates J1813 is a HMXB. Its transient nature, duty cycle, the amplitude of observed X-ray variability, the shape and luminosity of the X-ray flares -- and the lack of known X-ray outbursts ( erg s) -- strongly support the identification of J1813 as an SFXT.
9 pages, 7 figures, 3 tables, Accepted for publication in A&A
References in corpus (24)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- The XMM-Newton serendipitous survey IX. The fourth XMM-Newton serendipitous source catalogue
- Unveiling supergiant fast X-ray transient sources with INTEGRAL
- Towards a unified view of inhomogeneous stellar winds in isolated supergiant stars and supergiant high mass X-ray binaries
- Multi-wavelength observations of Galactic hard X-ray sources discovered by INTEGRAL. II. The environment of the companion star
- Monitoring Supergiant Fast X-ray Transients with Swift. I. Behavior outside outbursts
- Advances in Understanding High-Mass X-ray Binaries with INTEGRAL and Future Directions
- IGR J17544-2619: A new supergiant fast X-ray transient revealed by optical/infrared observations
- Distribution of High-Mass X-ray Binaries in the Milky Way
- Bright Flares in Supergiant Fast X-ray Transients
- Discovery of a Highly Energetic X-ray Pulsar Powering HESS J1813-178 in the Young Supernova Remnant G12.82-0.02
- Seven Years with the Swift Supergiant Fast X-ray Transients Project
- The EXTraS Project: Exploring the X-ray transient and variable sky
- EXTraS discovery of an X-ray superflare from an L dwarf
- Bright flares from the X-ray pulsar SWIFT J1626.6-5156
- Multi-wavelength observations of IGR J17544-2619 from quiescence to outburst
- Supergiant Fast X-ray Transients uncovered by the EXTraS project: flares reveal the development of magnetospheric instability in accreting neutron stars
- Optical and infrared study of the obscured B[e] supergiant high-mass X-ray binary IGR J16318-4848
- Chandra, MDM, Swift, and NuSTAR observations confirming the SFXT nature of AX J1949.8+2534
- Discovery of periodic dips in the brightest hard X-ray source of M31 with EXTraS
- XMM-Newton discovery of very high obscuration in the candidate Supergiant Fast X-ray Transient AX J1714.1-3912
- Capturing the lowest luminosity state of the Supergiant Fast X-ray Transient XTE J1739-302
- Detecting the intrinsic X-ray emission from the O-type donor star and the residual accretion in a Supergiant Fast X-ray Transient during its faintest state
- A puzzling 2-hour X-ray periodicity in the 1.5-hour orbital period black widow PSR J1311-3430