EP260806a
GCN Circular 45708
Subject
EP260806a: e-MERLIN detection at 5 GHz
Date
2026-09-23T15:37:47Z (3 days ago)
From
Rob Eyles-Ferris at U of Leicester <raje1@leicester.ac.uk>
Via
Web form
R. A. J. Eyles-Ferris (Leicester), L. Rhodes (TSI/McGill), D. Williams-Baldwin (JBCA/Manchester), F. Carotenuto (INAF-OAR) report on behalf of a larger collaboration:
We observed the field of the X-ray transient (Li et al., GCN 45299; Li et al., GCN 45305) with the e-MERLIN interferometer at a central frequency of 5 GHz. Our observation started at 2026-09-18 15:15 UT, ended at 2026-1919 10:35 UT and utilised the Lovell, Mk 2, Cambridge, Knockin, Darnhall and Pickmere telescopes.
We clearly identify the radio counterpart of EP260806a (de Ugarte Postigo et al., GCN 45541; Ho et al., GCN 45547; Nohara et al., GCN 45643) at a preliminary flux density of ~3.0 mJy. Our preliminary position appears broadly consistent with that of Ho et al. (GCN 45547). Further observations are planned.
We thank the e-MERLIN staff for the time allocation and their assistance with the observations.
GCN Circular 45643
Subject
EP260806a: Yamaguchi Interferometer radio detections
Date
2026-09-19T10:11:52Z (7 days ago)
From
Takanori Sakamoto at AGU <tsakamoto@phys.aoyama.ac.jp>
Via
Web form
Shogo Nohara, Natsuki Maekawa, Hiroki Takebuchi, Kotaro Niinuma, Kenta Fujisawa (Yamaguchi University)
Takanori Sakamoto (Aoyama Gakuin University)
We observed the Einstein Probe transient EP260806a (Li et al., GCN 45299) with the Yamaguchi Interferometer (Fujisawa et al., 2022) in Yamaguchi, Japan, on August 18, September 11, and September 16, 2026 UTC. The observations were conducted simultaneously at central frequencies of 6856 and 8448 MHz, with a bandwidth of 512 MHz for each frequency band. We used 3C48 and J0043+3426 as the flux and gain calibrators. We summarize our measurements of EP260806a at each observing epoch in the table below. The upper limits are quoted at the 3-sigma noise level.
MJD 6856 MHz flux [mJy] 8448 MHz flux [mJy]
61270.57 < 1.77 < 2.57
61294.85 Affected by RFI 7.03+/-0.86
61299.52 8.02+/-0.46 9.26+/-0.77
Our observations are consistent with the radio emission reported at 10 GHz with the VLA (Ho et al., GCN 45547). The measurements performed on September 16 suggest a flat or inverted radio spectrum between 6856 and 8448 MHz.
We will continue monitoring the radio flux of EP260806a with the Yamaguchi Interferometer.
GCN Circular 45547
Subject
EP260806a: VLA+ALMA radio detections
Date
2026-09-10T14:49:26Z (16 days ago)
From
Anna Y Q Ho at Cornell University <ayh24@cornell.edu>
Via
Web form
Anna Ho, Cassie Sevilla, Michael Camilo (Cornell), Daniel Perley (LJMU) report:
We observed the position of the Einstein Probe transient EP260806a (Li et al. GCN 45299, Yang et al. GCN 45390), with the Karl G. Jansky Very Large Array (VLA) and the Atacama Large Millimeter/submillimeter Array (ALMA) under joint VLA-ALMA program 26A-414 (PI Ho). The VLA observation began on 2026 September 5 UT (30 observer-frame days after discovery) at mean frequencies of 6, 10, 15, and 33 GHz, while the ALMA observation began on 2026 September 10 UT (35 observer-frame days after discovery) at mean frequencies of 104.5, 210, and 350 GHz.
From a preliminary analysis, we detect a bright radio source with a 10 GHz flux density of ~5.5 mJy and a 104.5 GHz flux density of ~50 mJy. The source position at 10 GHz is:
RA(J2000) = 00:49:13.571
Dec(J2000) = +35:33:39.59
This is consistent with the location of the optical counterpart of EP260806a (He et al. GCN 45300, de Ugarte Postigo et al. GCN 45302, Eyles-Ferris GCN 45303, Ma et al. GCN 45305, Li et al. GCN 45305, de Ugarte Postigo et al. GCN 45306, Anumarlapudi et al. GCN45312, Abidkhanov et al. GCN 45354, Hua et al. GCN 45385, Maksut et al. GCN 45389, Pankov et al. GCN 45396) and confirms the mm detection reported by NOEMA (de Ugarto Postigo et al. GCN 45541