Advances in Astronomy and Space Physics, Volume 3, Issue 1, PP. 32-37 (2013)
doi: 10.17721/2227-1481.3.32-37
Nonthermal emission model of isolated X-ray pulsar RX J0420.0-5022
1Center for Theoretical Astrophysics, ITP, Ilia State University, 0162, Tbilisi, Georgia
2Main Astronomical Observatory of the NAS of Ukraine, 27 Akademika Zabolotnoho St., 03680 Kyiv, Ukraine
3Dublin Institute for Advanced Studies, Fitzwilliam Place, 31, Dublin 2, Ireland
4Dublin City University, Dublin 9, Ireland
2Main Astronomical Observatory of the NAS of Ukraine, 27 Akademika Zabolotnoho St., 03680 Kyiv, Ukraine
3Dublin Institute for Advanced Studies, Fitzwilliam Place, 31, Dublin 2, Ireland
4Dublin City University, Dublin 9, Ireland
Abstract
In this paper, an alternative theoretical interpretation to the generally assumed thermal emission models of the observed X-ray spectrum of isolated pulsar RX J0420.0-5022 is presented. It is well-known that at a pulsar surface, the distribution function of relativistic particles is one-dimensional. However, cyclotron instability causes an appearance of transverse momenta of relativistic electrons, which as a result start to radiate in the synchrotron regime. On the basis of the Vlasov kinetic equation we study the process of quasi-linear diffusion (QLD) developed by means of the cyclotron instability. This mechanism enables the generation optical and X-ray emissions on the light cylinder lengthscales. An analysis of the three archival XMM-Newton observations of RX J0420.0-5022, is performed. Considering a dierent approach to synchrotron emission theory, a spectral energy distribution was obtained, which was in a good agreement with the observational data. A fit to the X-ray spectrum was conducted using both the present synchrotron emission model spectrum absorbed by cold interstellar matter, as well as the generally assumed black-body absorption model.
Keywords:
pulsars: individual RX J0420.0-5022, stars: magnetic elds, radiation mechanisms: non-thermal
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