EP241026b
GCN Circular 38018
Subject
EP241026b: Liverpool Telescope optical follow-up
Date
2024-10-31T20:38:32Z (2 years ago)
From
A. Bochenek at Liverpool John Moores University <a.m.bochenek@2023.ljmu.ac.uk>
Via
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A. Bochenek and D. A. Perley (LJMU) report:
We observed the field of the fast X-ray transient EP241026b (Lian et al., GCN 37902) using the IO:O optical camera on the 2m robotic Liverpool Telescope. We obtained 6x200s exposures the SDSS r filter starting at 2024-10-31 01:41:20 UT, approximately 4.31 days after the trigger.
The potential optical counterpart reported by Rossi et al. (GCN 37938) is marginally detected: forced photometry at the source location gives a 1.7-sigma detection, at a magnitude of r = 23.0 (-0.5, +0.9). More conservatively, a 2-sigma upper limit on the source magnitude is r > 22.1. Photometry was obtained using nearby PanSTARRS secondary standards and was not corrected for extinction.
The transient has therefore faded since the observation by Rossi et al. (GCN 37938) - comparing their detection to our upper limit, it has faded by at least 0.6 mag between 1.48 and 4.31 days post-trigger.
GCN Circular 37967
Subject
EP241026b: EP-FXT follow-up observation
Date
2024-10-30T13:14:26Z (2 years ago)
From
EP Team at NAOC/CAS <ep_ta@bao.ac.cn>
Via
Web form
T.Y. Lian, Y. L. Wang, D. Y. Li, S. X. Wen, W. Yuan (NAO, CAS) on behalf of the Einstein Probe team
Following the detection of the fast X-ray transient EP241026b (Lian et al., GCN 37902), we performed an observation of EP241026b with the Follow-up X-ray Telescope (FXT) on board the Einstein Probe. The observation started at 2024-10-27T03:36:23 (UTC), about 9 hours after the EP-WXT detection, with an exposure time of 4037 seconds. An uncatalogued X-ray source is detected at R.A. = 56.4058 deg, DEC = 41.0312 deg (J2000) with an uncertainty of 10 arcsec in radius (90% C.L. statistical and systematic). The average FXT spectrum in 0.5-10 keV band can be fitted by an absorbed power law with a photon index of 2.3(+1.5/-1.4) (with a column density fixed at the Galactic one of 3.38 x 10^21 cm^-2), giving an average unabsorbed flux of 1.5(+2.8/-0.5) x 10^-13 erg/s/cm^2 in the 0.5-10 keV band. The FXT position is 2 arcsec away from the likely optical counterpart detected by LBT (Rossi et al., GCN 37938). We thus consider that the FXT detection is the X-ray counterpart of EP241026b.
Launched on January 9, 2024, EP is a space X-ray observatory to monitor the soft X-ray sky with X-ray follow-up capability (Yuan et al. 2022, Handbook of X-ray and Gamma-ray Astrophysics).
GCN Circular 37938
Subject
EP 241026b: LBT possible optical counterpart (brightening source)
Date
2024-10-29T11:47:25Z (2 years ago)
From
Daniele B. Malesani at IMAPP / Radboud University <d.malesani@astro.ru.nl>
Via
Web form
Andrea Rossi (INAF/OAS), Daniele B. Malesani (DAWN/NBI and Radboud Univ.), E. Maiorano (INAF/OAS), report on behalf of a larger collaboration:
We performed a second observation of the field of the fast X-ray transient EP241026b (Lian et al., GCN 37902), using the Large Binocular Telescope (LBT), equipped with the LBC instrument. Observations were carried out again in the SDSS r filter, and consisted of 6 exposures by 120 s each. The observation mid time was October 28.244 UT (1.48 days after the EP trigger).
Digital image subtraction was carried out with HOTPANTS (Becker, 2015) between this data set and our earlier observation (Malesani et al., GCN 37907). In the difference image, a very obvious transient is detected within the EP/WXT error circle, and is located at coordinates (J2000):
RA = 03:45:37.55
Dec = +41:01:51.9
This transient is observed to brighten by about 1.9 mag among the two observations, and has a magnitude r = 21.6 (AB) in our second (brighter) epoch. No source is visible at this position in the Pan-STARRS images of this field. While this behavior is unusual for GRB afterglows, brightening episodes have been noticed recently in a number of EP-detected transients (e.g., EP240414a: Srivastav et al., arXiv:2409.19070