Observational connection of non-thermal X-ray emission from pulsars with their timing properties and thermal emission
arXiv:2302.00204 · doi:10.1093/mnras/stad400
Abstract
The origin and radiation mechanisms of high energy emissions from pulsars have remained mysterious since their discovery. Here we report, based on a sample of 68 pulsars, observational connection of non-thermal X-ray emissions from pulsars with their timing properties and thermal emissions, which may provide some constraints on theoretical modeling. Besides strong correlations with the spin-down power and the magnetic field strength at the light cylinder , the non-thermal X-ray luminosity in 0.5 - 8 keV, , represented by the power-law component in the spectral model, is found to be strongly correlated with the highest possible electric field strength in the polar gap, , of the pulsar. The spectral power index of that power-law component is also found, for the first time in the literature, to strongly correlate with , and , thanks to the large sample. In addition, we found that can be well described by , where and are the surface temperature and the emitting-region radius of the surface thermal emission, represented by the black-body component in the spectral model. , on the other hand, can be well described only when timing variables are included, and the relation is plus a constant. These relations strongly suggest the existence of connections between surface thermal emission and electron-positron pair production in pulsar magnetospheres.
13 pages, 11 figures, accepted by MNRAS
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