Magnetar-like Emission from the Young Pulsar in Kes 75
F. P. Gavriil, Marjorie Gonzalez, E. V. Gotthelf, V. M. Kaspi, Margaret A. Livingstone, Peter Woods
Abstract
F. P. Gavriil, Marjorie Gonzalez, E. V. Gotthelf, V. M. Kaspi, Margaret A. Livingstone, Peter Woods
Abstract
We report detection of magnetar-like X-ray bursts from the young pulsar PSR J1846-0258, at the center of the supernova remnant Kes 75. This pulsar, long thought to be rotation-powered, has an inferred surface dipolar magnetic field of 4.9x10^13 G, higher than those of the vast majority of rotation-powered pulsars, but lower than those of the ~12 previously identified magnetars. The bursts were accompanied by a sudden flux increase and an unprecedented change in timing behavior. These phenomena lower the magnetic and rotational thresholds associated with magnetar-like behavior, and suggest that in neutron stars there exists a continuum of magnetic activity that increases with inferred magnetic field strength.
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We report detection of magnetar-like X-ray bursts from the young pulsar PSR J1846-0258, at the center of the supernova remnant Kes 75. This pulsar, long thought to be rotation-powered, has an inferred surface dipolar magnetic field of 4.9x10^13 G, higher than those of the vast majority of rotation-powered pulsars, but lower than those of the ~12 previously identified magnetars. The bursts were accompanied by a sudden flux increase and an unprecedented change in timing behavior. These phenomena lower the magnetic and rotational thresholds associated with magnetar-like behavior, and suggest that in neutron stars there exists a continuum of magnetic activity that increases with inferred magnetic field strength.
Key concepts: Magnetar, Pulsar, Neutron star, Physics, Astrophysics, Astronomy, Luminosity, Pulsar planet