GRB 260924A
GCN Circular 45768
The IceCube Collaboration (http://icecube.wisc.edu/) reports:
IceCube has performed a search for track-like muon neutrino events arriving from the direction of GRB 260924A (GCN 45712) at the position determined by NOT observations of the afterglow (GCN 45718) in a time range of (-1 hour, +2 hours) from the initial trigger (GCN 45723) reported by Fermi-GBM (T0=2026-09-24 01:13:23.56 UTC) during which IceCube was collecting good quality data.
Zero track-like events are found to coincide with the position of the GRB. We accordingly derive a time-integrated muon-neutrino flux upper limit of E^2 dN/ dE = 3.5e-2 GeV cm^-2 at 90% CL, for an E^-2 power law. 90% of events IceCube would detect from a source at this declination with an E^-2 spectrum have energies between approximately 940 GeV and 1.6 PeV.
A subsequent search was performed including 2 days of data centered on the Fermi-GBM trigger (2026-09-23 01:13:23.56 UTC to 2026-09-25 01:13:23.56 UTC). In this search, we report a p-value of 1.0, consistent with background expectation. We accordingly derive a time-integrated muon neutrino flux upper limit of E^2 dN/ dE = 4.1e-2 GeV cm^-2 at 90% CL, under the assumption of an E^-2 power law.
The IceCube Neutrino Observatory is a cubic-kilometer neutrino detector operating at the geographic South Pole, Antarctica. The IceCube realtime alert point of contact can be reached at roc@icecube.wisc.edu.
[1] IceCube Collaboration, R. Abbasi et al., ApJ 910 4 (2021)
GCN Circular 45762
Geoffrey Mo (Carnegie/Caltech), K. De, V. Karambelkar, S. Ibrahim, D. Schiminovich (Columbia University) report:
We observed the field of GRB 260924A (Fermi GBM Team, GCN 45712; D'Elia et al., GCN 45713; Evans et al., GCN 45715; Salunke et al., GCN 45720; Holzmann Airasca et al., GCN 45721; McDermott et al., GCN 45723; Dichiara et al., GCN 45730; Waratkar et al., GCN 45732; Gupta et al., GCN 45733; Vijaykumar et al., GCN 45734; Yu et al., GCN 45741; Gupta et al., GCN 45750; Ridnaia et al., GCN 45751) in the near-infrared J and Hs bands with the MDM InfraRed Astronomy inGaas Experiment (MIRAGE) instrument on the MDM 1.3 m telescope.
Observations began at 2026-09-26T12:08:38 (+2.46 days after the GRB trigger) in the J band and 2026-09-26T12:32:07 (+2.47 days) in the Hs band, lasting 1080 s in J and 1050 s in Hs. We detect the optical counterpart (Hu et al., GCN 45717; Izzo et al., GCN 45718; Klingler et al., GCN 45735; Ma et al., GCN 45736; Castro-Tirado et al., GCN 45740; Novotny et al., GCN 45743; Aryan et al., GCN 45748; Li et al., GCN 45758; Fortin et al., GCN 45759) in the J band and set an upper limit in Hs, with the following AB magnitudes: J = 19.81 ± 0.20, Hs > 19.2.
MIRAGE is a new robotic YJHs-band near-infrared imager for the MDM 1.3m telescope. We thank the Mt Cuba Astronomical Foundation for development of MIRAGE and the MDM Observatory staff for supporting the observations.
GCN Circular 45759
Francis Fortin (IRAP), Edilberto Aguilar-Ruiz (UNAM), Stéphane Basa (UAR Pytheas), William H. Lee (UNAM), Jean-Luc Atteia (IRAP), Camila Angulo (UNAM), Dalya Akl (NYUAD), Sarah Antier (IJCLAB), Rosa L. Becerra (UNAM), Nathaniel R. Butler (ASU), Damien Dornic (CPPM), Jean-Grégoire Ducoin (CPPM), Leonardo García-García (UNAM), Ramandeep Gill (UNAM), Noémie Globus (UNAM), Marion Guelfand (CPPM), Asuka Kuwata (UNAM), Massimiliano Lincetto (CPPM), Nikos Mandarakas (LAM), Diego López-Cámara (UNAM), Francesco Magnani (CPPM), Enrique Moreno Méndez (UNAM), Margarita Pereyra (UNAM), Fredd Sánchez Álvarez (UNAM), Benjamin Schneider (LAM), Antonio de Ugarte Postigo (LAM), Alan M. Watson (UNAM) report:
We imaged the field of the Swift GRB 260924A (D’Elia et al., GCN Circ. 45713) using the DDRAGO two-channel wide-field imager on the COLIBRÍ telescope. We observed 2026-09-26T11:06:20 to 2026-09-26T12:19:36 UTC (from 57.88 to 59.12 hours after the trigger) and obtained 45 minutes of simultaneous exposure in the r and z filters.
The data were reduced and coadded with the COLIBRÍ pipeline and analysed with STDWeb/STDPipe (Karpov 2025). The photometry was calibrated using nearby stars from the PanSTARRS DR1 catalog, is in the AB system, and is not corrected for Galactic extinction.
We detected the optical counterpart reported by Hu et al., GCN Circ. 45717, Izzo et al., GCN Circ. 45718 and Klingler et al., GCN Circ. 45735, at a preliminary magnitude of:
r = 20.40 +/- 0.03
z = 20.07 +/- 0.03
We thank the staff of the Observatorio Astronómico Nacional at Sierra de San Pedro Mártir, as well as the technical and engineering teams at CEA, CPPM, IRAP, LAM, OHP, OSU Pytheas, and UNAM.
COLIBRÍ is an astronomical observatory developed and operated jointly by France (AMU, CNES and CNRS) and Mexico (UNAM and SECIHTI). It is located at the Observatorio Astronómico Nacional on the Sierra de San Pedro Mártir, Baja California, Mexico.
GCN Circular 45758
Jin-Ji Li, Zhong-Nan Dong, Jia-Qi Lin, Pu Lin, Yun Shi, Hao-Nan Yang, Hao-Ran Zhang, P H Thomas Tam, Rong-Feng Shen, Bin Ma (Sun Yat-sen University) report on behalf of the SYSU 80cm infrared telescope team:
We carried out a second epoch of J-band observations of GRB 260924A using the Sun Yat-sen University (SYSU) 80 cm infrared telescope, following our previous detection reported in Ma et al. (GCN 45736). Our second-epoch observations started on 2026 September 25 at 22:00 UT, approximately 44.8 hours after the Swift/BAT trigger, and continued until 23:03 UT in the J band.
We do not detect the source at the position of the counterpart (Hu et al., GCN 45717; Izzo et al., GCN 45718; Vijaykumar et al., GCN 45734; Klingler et al., GCN 45735; Ma et al., GCN 45736; Castro-Tirado et al., GCN 45740; Yu et al., GCN 45741; Novotny et al., GCN 45743; Aryan et al., GCN 45748) in the stacked image, down to a 5-sigma limiting magnitude of J > 18.5 mag (Vega).
The photometry was calibrated against nearby stars from the 2MASS catalog and is reported in the Vega system, without correction for Galactic extinction. The SYSU 80 cm infrared telescope is operated and managed by the Department of Astronomy, Sun Yat-sen University.
GCN Circular 45751
A. Ridnaia, D. Frederiks, A. Lysenko, V. Panteleeva,
D. Svinkin, A. Tsvetkova, M. Ulanov, and T. Cline,
on behalf of the Konus-Wind team, report:
The long-duration GRB 260924A
(Fermi-GBM detection: Fermi GBM team, GCN 45712;
McDermott & Scotton, GCN 45723;
Swift detection: D'Elia et al., GCN 45713;
Gupta et al., GCN 45733;
AstroSat-CZTI detection: Salunke et al., GCN 45720;
Fermi-LAT detection: Airasca et al., GCN 45721;
Nustar detection: Waratkar & Grefenstette, GCN 45732;
SVOM-GRM detection: Yu et al., GCN 45741)
triggered Konus-Wind at T0=04406.079 s UT (01:13:26.079).
The burst light curve shows two separated multipeaked emission episodes.
The first episode starts at ~T0-3.5 s and has a total duration of ~212 s,
the second starts at ~T0+328 s and lasts up to ~T0+361 s.
The emission is seen up to ~8 MeV.
The Konus-Wind light curve of this GRB is available at
http://www.ioffe.ru/LEA/GRBs/GRB260924_T04406/
As observed by Konus-Wind, the burst
had the total fluence of 3.83(-0.40,+0.43)x10^-4 erg/cm2,
and the 64-ms peak flux, measured from T0+108.288 s,
of 1.10(-0.16,+0.16)x10^-5 erg/cm2/s
(both in the 20 keV - 10 MeV energy range).
The time-averaged spectrum of the burst
(measured from T0 to T0+360.704 s)
is best fit in the 20 keV - 10 MeV range
by the GRB (Band) model with the following parameters:
the low-energy photon index alpha = -0.62(-0.11,+0.14),
the high energy photon index beta = -2.37(-0.31,+0.20),
the peak energy Ep = 497(-61,+59) keV
(chi2 = 91/97 dof).
The spectrum near the maximum count rate
(measured from T0+106.752 to T0+114.944 s)
is best fit in the 20 keV - 10 MeV range
by the GRB (Band) model with the following parameters:
the low-energy photon index alpha = -0.62(-0.09,+0.11),
the high energy photon index beta = -2.41(-0.23,+0.17),
the peak energy Ep = 596(-60,+63) keV
(chi2 = 82/86 dof).
Assuming the redshift z=3.510 (Castro-Tirado et al., GCN 45740)
and a standard cosmology with H_0 = 67.3 km/s/Mpc, Omega_M = 0.315,
and Omega_Lambda = 0.685 (Planck Collaboration, 2014),
we estimate the following rest-frame parameters:
the isotropic energy release E_iso is 1.00(-0.11,+0.11)x10^55 erg
(on a par with the most energetic to date GRB 221009A, Frederiks et al., 2023),
the peak luminosity L_iso is 1.30(-0.19,+0.19)x10^54 erg/s (one of the most
luminous GRBs to date), the rest-frame peak energy of the time-averaged spectrum
Ep,i,z is 2242(-275,+267) keV and the spectrum near the maximum count rate
Ep,p,z is 2690(-270,+285) keV.
With the obtained estimates, GRB 260924A is inside 68% prediction bands for
both the 'Amati' and the 'Yonetoku' relations derived for the sample of >300 long
KW GRBs with known redshifts (Tsvetkova et al., 2017; Tsvetkova et al., 2021),
see http://www.ioffe.ru/LEA/GRBs/GRB260924_T04406/GRB260924A_rest_frame.pdf
All the quoted errors are at the 68% confidence level.
All the quoted values are preliminary.
GCN Circular 45750
Rahul Gupta (NASA GSFC), Peter Veres (UAH), Vikas Chand (LSU), Eric Burns (LSU), Pádraig McDermott (University College Dublin), and L. Scotton (UAH) reports:
We have estimated the isotropic-equivalent gamma-ray energy of GRB 260924A (The Fermi GBM team, GCN 45712; D'Elia et al., GCN 45713; Salunke et al., GCN 45720; Holzmann Airasca et al., GCN 45721; McDermott et al., GCN 45723; Waratkar et al., GCN 45732; Gupta et al., GCN 45733; and Yu et al., GCN 45741