Detection of the Geminga pulsar at energies down to 20 GeV with the LST-1 of CTAO
The CTAO-LST Project: K. Abe (1), S. Abe (2), A. Abhishek (3), F. Acero (4,5), A. Aguasca-Cabot (6), I. Agudo (7), C. Alispach (8), D. Ambrosino (9), F. Ambrosino (10), L. A. Antonelli (10), C. Aramo (9), A. Arbet-Engels (11), C. Arcaro (12), T. T. H. Arnesen (13), K. Asano (2)

TL;DR
This paper reports the detection of the Geminga pulsar at energies down to 20 GeV using the LST-1 telescope of CTAO, demonstrating its enhanced sensitivity and spectral capabilities for pulsar observations.
Contribution
First detection of Geminga pulsar at energies as low as 20 GeV with LST-1, showcasing improved sensitivity and spectral analysis methods for CTAO telescopes.
Findings
Geminga detected between 20 and 65 GeV with high significance.
The P2 peak of the pulsar phaseogram is detected at 12.2σ.
Spectral analysis favors a sub-exponential cutoff model.
Abstract
Geminga is the third gamma-ray pulsar firmly detected by imaging atmospheric Cherenkov telescopes (IACTs) after the Crab and the Vela pulsars. Most of its emission is expected at tens of GeV, and, out of the planned telescopes of the upcoming Cherenkov Telescope Array Observatory (CTAO), the Large-Sized Telescopes (LSTs) are the only ones with optimised sensitivity at these energies. We aim to characterise the gamma-ray pulse shape and spectrum of Geminga as observed by the first LST (hereafter LST-1) of the CTAO-North. Furthermore, this study confirms the great performance and the improved energy threshold of the telescope, as low as 10 GeV for pulsar analysis, with respect to current-generation Cherenkov telescopes. We analysed 60 hours of good-quality data taken by the LST-1 at zenith angles below 50. Additionally, a new Fermi-LAT analysis of 16.6 years of data was carried…
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