The Fermi LAT detection of magnetar-like pulsar PSR J1846-0258 at high-energy gamma-rays
L. Kuiper (1), W. Hermsen (1, 2), A. Dekker (1) ((1) SRON -, Netherlands Institute for Space Research, (2) Astronomical Institute `Anton, Pannekoek' UvA, Amsterdam, The Netherlands)

TL;DR
This paper reports the detection of high-energy gamma-ray pulsations from the magnetar-like pulsar PSR J1846-0258 using Fermi LAT, revealing its spectral characteristics and comparing it with similar pulsars to understand emission mechanisms.
Contribution
First detection of gamma-ray pulsations from PSR J1846-0258, providing detailed spectral and timing analysis and comparing its emission profile with other high-B pulsars.
Findings
Detected 4.2 sigma pulsed gamma-ray signal at 30-100 MeV
Pulsed flux measured as (3.91 +/- 0.97)E-9 photons/(cm^2 s MeV)
Spectral peaks at around 3.5 MeV, similar to other high-B pulsars
Abstract
We report the detection of the pulsed signal of the radio-quiet magnetar-like pulsar PSR J1846-0258 in the high-energy \gr-ray data of the Fermi Large Area Telescope (Fermi LAT). We produced phase-coherent timing models exploiting RXTE PCA and Swift XRT monitoring data for the post- (magnetar-like) outburst period from 2007 August 28 to 2016 September 4, with independent verification using INTEGRAL ISGRI and Fermi GBM data. Phase-folding barycentric arrival times of selected Fermi LAT events from PSR J1846-0258, resulted in a 4.2 sigma detection (30--100 MeV) of a broad pulse consistent in shape and aligned in phase with the profiles that we measured with Swift XRT (2.5--10 keV), INTEGRAL ISGRI (20--150 keV) and Fermi GBM (20--300 keV). The pulsed flux (30--100 MeV) is (3.91 +/- 0.97)E-9 photons/(cm^2 s MeV). Declining significances of the INTEGRAL ISGRI 20--150 keV pulse profiles…
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