GCN 45168: IceCube-260712A: No candidates with the Zwicky Transient Facility (ZTF)
2026-07-15T15:08:15.643Z | rev 0
Cristobal Zilleruelo Cañas (DESY), Jannis Necker (Leiden University), Akshay Eranhalodi (DESY), Robert Stein (JSI), and Anna Franckowiak (Ruhr University Bochum) report,
On behalf of the Zwicky Transient Facility (ZTF) and Global Relay of Observatories Watching Transients Happen (GROWTH) collaborations:
As part of the ZTF neutrino follow up program (Stein et al. 2023), we observed the localization region of the neutrino event IceCube-260712A (Zilleruelo Cañas et. al, GCN 45141) with the Palomar 48-inch telescope, equipped with the 47 square degree ZTF camera (Bellm et al. 2019, Graham et al. 2019). Our observations were delated due to weather. We started observations in the g- and r-band beginning at 2026-07-14 04:58 UTC, approximately 41.9 hours after event time. We covered 97.5% (0.8 sq deg) of the reported localization region. This estimate accounts for chip gaps. Each exposure was 300s with a typical depth of 21.0 mag.
The images were processed in real-time through the ZTF reduction and image subtraction pipelines at IPAC to search for potential counterparts (Masci et al. 2019). AMPEL (Nordin et al. 2019, Stein et al. 2021) was used to search the alerts database for candidates. We reject stellar sources (Tachibana and Miller 2018) and moving objects, and apply machine learning algorithms (Mahabal et al. 2019).
No candidate counterparts were detected. This is consistent with the findings of Garrappa et al. (GCN 45157).
ZTF and GROWTH are worldwide collaborations comprising Caltech/IPAC, USA; University of Maryland, USA; University of California, Berkeley, USA; Cornell University, USA; Drexel University, USA; University of North Carolina at Chapel Hill, USA; Institute of Science and Technology, Austria; National Central University, Taiwan; OKC, Sweden; DZA, Germany.
GROWTH acknowledges generous support of the NSF under PIRE Grant No 1545949.
Alert distribution service provided by DIRAC@UW (Patterson et al. 2019).
Alert database searches are done by AMPEL (Nordin et al. 2019).
Alert filtering is performed with the nuztf (Stein et al. 2021, https://github.com/desy-multimessenger/nuztf ).
GCN 45159: IceCube-260712A: Upper limits from a search for additional neutrino events in IceCube
2026-07-14T18:58:13.611Z | rev 0
The IceCube Collaboration (http://icecube.wisc.edu/) reports:
IceCube has performed a search [1] for additional track-like muon neutrino events arriving from the direction of IceCube-260712A (https://gcn.nasa.gov/circulars/45141) in a time range of 1000 seconds centered on the alert event time (2026-07-12 10:58:28.989 UTC to 2026-07-12 11:15:08.989 UTC) during which IceCube was collecting good quality data. Excluding the event that prompted the alert, zero track-like events are found within the 90% containment region of IceCube-260712A. We report a p-value of 1.00 in this time window. IceCube’s sensitivity to neutrino point sources with an E^-2.5 spectrum, expressed as E^2 dN/dE evaluated at 1 TeV, is 1.5e-01 GeV cm^-2 within the 90% spatial containment region of IceCube-260712A in a 1000 second time window. 90% of events IceCube would detect from a source at this declination
with an E^-2.5 spectrum have energies in the approximate energy range between 2e+02 GeV and 5e+04 GeV.
A subsequent search was performed including 2 days of data centered on the alert event time (2026-07-11 11:06:48.989 UTC to 2026-07-13 11:06:48.989 UTC). In this case, we report a p-value of 1.00, consistent with no significant excess of track events. IceCube’s sensitivity to neutrino point sources with an E^-2.5 spectrum, expressed as E^2 dN/dE evaluated at 1 TeV, is 1.8e-01 GeV cm^-2 within the 90% spatial containment region of IceCube-260712A in a 2 day
time window.
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 45157: IceCube-260712A: LAST optical follow-up observations of the IceCube neutrino candidate
2026-07-14T15:05:38.449Z | rev 0
S. Garrappa (WIS), R. Konno (WIS), E. A. Zimmerman (WIS), A. Horowicz (WIS), E. O. Ofek (WIS), S. Ben-Ami (WIS), D. Polishook (WIS), O. Yaron (WIS), S. Fainer (WIS), A. Krassilchtchikov (WIS), Y. M. Shani (WIS), E. Segre (WIS), A. Gal-Yam (WIS), and S. Spitzer (WIS) on behalf of the LAST Collaboration.
We report observations of the IceCube Bronze neutrino candidate IC-260712A (GCN#45141) with the Large Array Survey Telescope (LAST, Ofek et al. 2023; Ben-Ami et al. 2023). We observed the field of IC-260712A using four telescopes (one unit), each with a FoV of 7.4 sq. deg and no filter (clear - similar to the GAIA Bp band) over several epochs. In each epoch, we stack 20 x 20 s images.
We began observations on 13 07 2026 at 18:54:08 UTC (T-T0 = 31.8 hours). The observations covered the full 90% neutrino footprint reported in GCN#45141 with a single LAST telescope.
We find no candidate transient optical counterpart in the automatic transient-detection pipeline (Konno et al. 2026). For each epoch, the average 5-sigma limiting magnitude in the neutrino footprint, is 20.1 (AB).
LAST is a survey telescope array of the Weizmann Astrophysical Observatory (https://www.weizmann.ac.il/wao/).
GCN 45146: Fermi-LAT Gamma-ray Observations of IceCube-260712A
2026-07-13T11:13:23.432Z | rev 0
L. Pfeiffer (Univ. of Wuerzburg), S. Buson (DESY, Univ. of Wuerzburg), S. Garrappa (Weizmann Institute of Science) and C. Bartolini (INFN Bari) on behalf of the Fermi-LAT collaboration:
We report an analysis of observations of the vicinity of the high-energy IC260712A neutrino event (GCN 45141) with all-sky survey data from the Large Area Telescope (LAT), on board the Fermi Gamma-ray Space Telescope. The IceCube event was detected on 26-07-12 at 11:06:48.98 UTC (T0) with J2000 position RA = 200.11 (+0.70, -0.66) deg, Decl. = 48.29 (+0.47, -0.44) deg 90% PSF containment (J2000). No cataloged gamma-ray sources are found within the 90% IC260712A localization error (FL16Y, The Fermi-LAT 16 Year Source List, The Fermi-LAT collaboration 2026, arXiv:2602.22148).
We searched for the existence of intermediate (days to years) timescale emission from a new gamma-ray transient source. Preliminary analysis indicates no significant (>5sigma) new excess emission (> 100 MeV) within the IC260712A 90% confidence localization. Assuming a power-law spectrum (photon index = 2.0 fixed) for a point source at the IC260712A best-fit position, the >100 MeV flux upper limit (95% confidence) is < 1.0e-10 ph cm^-2 s^-1 for ~18-years (2008-08-04 / T0), <4.9e-09 (<4.2e-08) ph cm^-2 s^-1 for a 1-month (1-day) integration time before T0.
Since Fermi normally operates in an all-sky scanning mode, regular monitoring of this source will continue. For this analysis, the Fermi-LAT contact person is L. Pfeiffer (leonard.pfeiffer at uni-wuerzburg.de).
The Fermi LAT is a pair conversion telescope designed to cover the energy band from 20 MeV to greater than 300 GeV. It is the product of an international collaboration between NASA and DOE in the U.S. and many scientific institutions across France, Italy, Japan and Sweden.
GCN 45141: IceCube-260712A - IceCube observation of a high-energy neutrino candidate track-like event
2026-07-12T13:57:38.570Z | rev 0
The IceCube Collaboration (http://icecube.wisc.edu/) reports:
On 26-07-12 at 11:06:48.98 UT IceCube detected a track-like event with a moderate probability of being of astrophysical origin.
The event was selected by the ICECUBE_Astrotrack_BRONZE alert stream.
Documentation regarding the alert streams and their astrophysical purity can be found here: https://gcn.nasa.gov/missions/icecube.
This alert has an estimated false alarm rate of 0.147 events per year due to atmospheric backgrounds.
The IceCube detector was in a normal operating state at the time of detection.
After the initial automated alert (https://gcn.gsfc.nasa.gov/notices_amon_g_b/142854_16534371.amon), more sophisticated reconstruction algorithms have been applied offline, with the direction refined to:
Date: 26-07-12
Time: 11:06:48.98 UT
RA: 200.11 (+0.7/-0.66 deg 90% PSF containment) J2000
Dec: 48.29 (+0.47/-0.44 deg 90% PSF containment) J2000
As announced in GCN Circular 43419 (https://gcn.nasa.gov/circulars/43419), IceCube alert notices for high-energy track alerts are now also streamed via Kafka.
IceCube Gold/Bronze track alerts are available on the Kafka topic 'gcn.notices.icecube.gold_bronze_track_alerts'.
The probability distribution of the true neutrino direction, allowing the extraction of precise 90% containment regions around the best-fit direction, is now available for revised reconstruction of high-energy track alerts.
The corresponding sky map is distributed as a FITS file and follows the explicit naming convention IceCube-YYMMDDX, where YYMMDD indicates the date of the event and X is a letter distinguishing multiple alerts on the same day. The download link is provided through the GCN schema distributed via Kafka.
Detailed documentation describing the alert distribution, schemas, and probability maps is available at: https://gcn.nasa.gov/missions/icecube.
No known gamma-ray sources listed in the Fermi LAT 16-year Source List (FL16Y) are located within the 90% uncertainty region of this event.
We report here sources within the 90% confidence contour available in the multi-order probability map, rather than those selected using the simplified rectangular error-box reported in this Circular.
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