Evidence for a cyclotron absorption line and spectral transition in EXO 2030+375 during 2021 giant outburst
Wen Yang, Wei Wang, Prahlad R. Epili

TL;DR
This study reports the detection of a cyclotron absorption line at 47 keV and observes spectral and pulse profile transitions in EXO 2030+375 during its 2021 giant outburst, revealing insights into the neutron star's magnetic field and accretion regimes.
Contribution
First detection of a cyclotron line at 47 keV in EXO 2030+375 during a giant outburst, linking spectral features to magnetic field and accretion state transitions.
Findings
Cyclotron line at 47 keV indicating magnetic field of (4.8-6.0)×10^12 G.
Pulse profile transition from multi-peak to single-peak at specific luminosity.
Spectral index changes signifying transition from sub-critical to super-critical regimes.
Abstract
Based on HXMT observations of EXO 2030+375 during its 2021 giant outburst, we report the analysis of pulse variations and the broadband X-ray spectrum, and find the presence of a potential cyclotron resonant scattering feature with the fundamental line at 47 keV from both average spectra and phase-resolved spectroscopy. During the outburst, the source reached an X-ray luminosity of erg /cm/s from 2-105 keV at a distance of 7.1 kpc. The X-ray pulsar at the spin period of 41.27 seconds exhibits complex timing and spectral variations with both energy and luminosity during the outburst. The shapes of the pulses profiles show the single main peak above 20 keV, while appear to exhibit multi-peak patterns in low energy bands, and the transition of pulse profiles from multi-peak to single-peak is observed at erg /cm/s, which suggests the evolution from…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Earthquake Detection and Analysis · Geomagnetism and Paleomagnetism Studies
