Agile Observations of the "Soft" Gamma-Ray Pulsar PSR B1509-58
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 conversion efficiency to gamma-rays of . The unusual soft break in the spectrum of PSR B1509-58 has been interpreted in the framework of polar cap models as a signature of the exotic photon splitting process in the strong magnetic field of this pulsar. In this interpretation our spectrum constrains the magnetic altitude of the emission point(s) at 3 km above the neutron star surface, implying that the attenuation may not be as strong as formerly suggested because pair production can substitute photon splitting in regions of the magnetosphere where the magnetic field becomes too low to sustain photon splitting. In the case of an outer-gap scenario, or the two pole caustic model, better constraints on the geometry of the emission would be needed from the radio band in order to establish whether the conditions required by the models to reproduce Agile lightcurves and spectra match the polarization measurements.
Keywords
Cite
@article{arxiv.1009.0021,
title = {Agile Observations of the "Soft" Gamma-Ray Pulsar PSR B1509-58},
author = {M. Pilia and A. Pellizzoni and A. Trois and F. Verrecchia and P. Esposito and P. Weltevrede and S. Johnston and M. Burgay and A. Possenti and E. Del Monte and F. Fuschino and P. Santolamazza and A. Chen and A. Giuliani and P. Caraveo and S. Mereghetti and M. Tavani and A. Argan and E. Costa and N. D'Amico and A. De Luca and Y. Evangelista and M. Feroci and F. Longo and M. Marisaldi and G. Barbiellini and A. Bulgarelli and P. W. Cattaneo and V. Cocco and F. D'Ammando and G. De Paris and G. Di Cocco and I. Donnarumma and M. Fiorini and T. Froysland and M. Galli and F. Gianotti and C. Labanti and I. Lapshov and F. Lazzarotto and P. Lipari and A. Morselli and L. Pacciani and F. Perotti and G. Piano and P. Picozza and M. Prest and G. Pucella and M. Rapisarda and A. Rappoldi and S. Sabatini and P. Soffitta and M. Trifoglio and E. Vallazza and S. Vercellone and V. Vittorini and A. Zambra and D. Zanello and C. Pittori and F. Lucarelli and P. Giommi and L. Salotti and G. F. Bignami},
journal= {arXiv preprint arXiv:1009.0021},
year = {2015}
}
Comments
17 pages, 2 figures, accepted for publication in ApJ