PAPER / ARXIV:2609.07774
Sandhya Sajith Menon , Lorenzo Pierini , Pia Astone , Cristiano Palomba , Francesco Safai Tehrani , Lorenzo Silvestri , Ornella Juliana Piccinni , Simone Dall'Osso , Stefano Dal Pra , Sabrina D'Antonio , Sergio Frasca , Dafne Guetta , Paola Leaci , Michal Bejger , Alicia Calafat , Evan Goetz , Rafel Jaume Amengual , Ian Jones , David Keitel , Andrzej Krolak , Iuri La Rosa , Andrew Melatos , Joan-Rene Merou , Lorenzo Mirasola , Claudio Salvadore , Alicia M. Sintes , Karl Wette
RESUMO
We present a directed search for long-transient gravitational waves from the possible newborn magnetar remnant of SN2023ixf, a nearby Type II core-collapse supernova in the M101 galaxy. The analysis uses LIGO Hanford and Livingston data from Engineering Run 15, using coincident data lying within the on-source window associated with the supernova. We target signals from a rapidly rotating, non-axisymmetric neutron star whose spin-down is dominated by gravitational-wave emission, producing a power-law decrease in frequency and a corresponding decrease in strain amplitude. The search is performed with the GFH-v2 pipeline, based on the Generalized Frequency Hough transform. No candidate survives the coincidence and follow-up analysis. We therefore set upper limits on the maximum detectable distance as a function of initial frequency and ellipticity. For the highest ellipticity interval, the 90% upper limits reach distances of about 1-2.5~Mpc across most of the analysed band. Although these limits are below the distance to M101, the search provides the first application of GFH-v2 to a nearby core-collapse supernova and characterizes its performance on real detector data.
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