Bright X-ray pulsars as sources of MeV neutrinos in the sky
Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 522:3 (2023) 3405-3411
IXPE Observations of the Quintessential Wind-accreting X-Ray Pulsar Vela X-1
The Astrophysical Journal Letters American Astronomical Society 947:2 (2023) L20-L20
Abstract:
The radiation from accreting X-ray pulsars was expected to be highly polarized, with some estimates for the polarization degree of up to 80%. However, phase-resolved and energy-resolved polarimetry of X-ray pulsars is required in order to test different models and to shed light on the emission processes and the geometry of the emission region. Here we present the first results of the observations of the accreting X-ray pulsar Vela X-1 performed with the Imaging X-ray Polarimetry Explorer. Vela X-1 is considered to be the archetypal example of a wind-accreting, high-mass X-ray binary system, consisting of a highly magnetized neutron star accreting matter from its supergiant stellar companion. The spectropolarimetric analysis of the phase-averaged data for Vela X-1 reveals a polarization degree (PD) of 2.3% ± 0.4% at the polarization angle (PA) of −47.°3 ± 5.°4. A low PD is consistent with the results obtained for other X-ray pulsars and is likely related to the inverse temperature structure of the neutron star atmosphere. The energy-resolved analysis shows the PD above 5 keV reaching 6%–10% and a ∼90° difference in the PA compared to the data in the 2–3 keV range. The phase-resolved spectropolarimetric analysis finds a PD in the range 0%–9% with the PA varying between −80° and 40°The X-Ray Polarimetry View of the Accreting Pulsar Cen X-3
The Astrophysical Journal Letters American Astronomical Society 941:1 (2022) L14-L14
Abstract:
GalaxieBright X-ray pulsars: how outflows influence beaming, pulsations and pulse phase lags
Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 518:4 (2022) 5457-5464
Determination of X-ray pulsar geometry with IXPE polarimetry
Nature Astronomy Springer Nature 6:12 (2022) 1433-1443