XMM-Newton observations of PSR J0554+3107: pulsing thermal emission from a cooling high-mass neutron star
arXiv:2208.06160 · doi:10.1093/mnras/stac2164
Abstract
XMM-Newton observations of the middle-aged radio-quiet -ray pulsar J0554+3107 allowed us, for the first time, firmly identify it in X-rays by detection of pulsations with the pulsar period. In the 0.2-2 keV band, the pulse profile shows two peaks separated by about a half of the rotation phase with the pulsed fraction of per cent. The profile and spectrum in this band can be mainly described by thermal emission from the neutron star with the hydrogen atmosphere, dipole magnetic field of G and non-uniform surface temperature. Non-thermal emission from the pulsar magnetosphere is marginally detected at higher photon energies. The spectral fit with the atmosphere+power law model implies that J0554+3107 is a rather heavy and cool neutron star with the mass of 1.6-2.1 , the radius of km and the redshifted effective temperature of eV. The spectrum shows an absorption line of unknown nature at eV. Given the extinction-distance relation, the pulsar is located at kpc and has the redshifted bolometric thermal luminosity of erg s. We discuss cooling scenarios for J0554+3107 considering plausible equations of state of super-dense matter inside the star, different compositions of the heat-blanketing envelope and various ages.
13 pages, 13 figures. Accepted for publication in MNRAS
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