Agile Observations of the "Soft" Gamma-Ray Pulsar PSR B1509-58
M. Pilia, A. Pellizzoni, A. Trois, F. Verrecchia, P. Esposito, P., Weltevrede, S. Johnston, M. Burgay, A. Possenti, E. Del Monte, F. Fuschino,, P. Santolamazza, A. Chen, A. Giuliani, P. Caraveo, S. Mereghetti, M. Tavani,, A. Argan, E. Costa, N. D'Amico, A. De Luca

TL;DR
This paper reports new Agile gamma-ray observations of pulsar PSR B1509-58, revealing a soft spectrum with a cutoff at 81 MeV, and discusses implications for emission models and magnetic field effects.
Contribution
It provides the first detailed gamma-ray spectral and timing analysis of PSR B1509-58 above 30 MeV, constraining emission models and magnetic field interactions.
Findings
Gamma-ray modulation detected at 5σ significance.
Spectrum exhibits a cutoff at 81 ± 20 MeV, the softest among gamma-ray pulsars.
Estimated gamma-ray luminosity and efficiency from the pulsar.
Abstract
We present the results of new Agile observations of PSR B1509-58 performed over a period of 2.5 years following the detection obtained with a subset of the present data. The modulation significance of the lightcurve above 30 MeV is at a 5 confidence level and the lightcurve is similar to those found earlier by Comptel up to 30 MeV: a broad asymmetric first peak reaching its maximum 0.39 +/- 0.02 cycles after the radio peak plus a second peak at 0.94 +/- 0.03. The gamma-ray spectral energy distribution of the pulsed flux detected by Comptel and Agile is well described by a power-law (photon index alpha=1.87+/-0.09) with a remarkable cutoff at E_c=81 +/- 20 MeV, representing the softest spectrum observed among gamma-ray pulsars so far. The pulsar luminosity at E > 1 MeV is erg/s, assuming a distance of 5.2 kpc, which implies a spin-down…
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