Cyclotron line formation in the radiative shock of an accreting magnetized neutron star
arXiv:2402.07983 · doi:10.1051/0004-6361/202348109
Abstract
Magnetic neutron stars (NSs) often exhibit a cyclotron resonant scattering feature (CRSF) in their X-ray spectra, but the site of the CRSF formation is still an open puzzle. A promising candidate for high-luminosity sources has always been the radiative shock (RS) in the accretion column. Yet, no quantitative calculations of spectral formation at the RS have been performed so far. Here we explore the scenario where the shock is the site of the CRSF formation. We study spectral formation at the RS and the emergent spectral shape across a wide range of the parameter space. We developed a Monte Carlo code to conduct radiation transfer simulations at the RS, adopting a fully relativistic scheme for the interaction between radiation and electrons. We properly treated bulk-motion Comptonization in the pre-shock region, thermal Comptonization in the post-shock region, and resonant Compton scattering in both regions. We calculated the angle- and energy-dependent emergent X-ray spectrum from the RS, focusing on both the CRSF and the X-ray continuum, under diverse conditions. We find that a power law, hard X-ray continuum and a CRSF are naturally produced by the first-order Fermi energization as the photons criss-cross the shock. The CRSF shape depends mainly on the transverse optical depth and the post-shock temperature. We show that the CRSF energy centroid is shifted by ~(20-30)% to lower energies compared to the classical cyclotron energy, due to the Doppler boosting between the shock frame and the bulk-motion frame. We demonstrate that a "bump" feature arises in the right wing of the CRSF due to upscattering of photons by the accreting plasma and extends to higher energies for larger optical depths and post-shock temperatures. The implications of the Doppler effect on the centroid of the emergent CRSF must be considered if an accurate determination of the magnetic field strength is desired.
13 pages, 9 figures. Accepted for publication in A&A
References in corpus (18)
- Thermal and Bulk Comptonization in Accretion-Powered X-Ray Pulsars
- The critical accretion luminosity for magnetized neutron stars
- Discovery of a flux-related change of the cyclotron line energy in Her X-1
- Monte Carlo Radiative Transfer
- Luminosity dependence of the cyclotron line and evidence for the accretion regime transition in V 0332+53
- On the dependence of the X-ray continuum variations with luminosity in accreting X-ray pulsars
- X-ray spectra from magnetar candidates. II Resonant cross sections for electron-photon scattering in the relativistic regime
- Luminosity-dependent changes of the cyclotron line energy and spectral hardness in Cep X-4
- Discovery and Modeling of a Flattening of the Positive Cyclotron Line/Luminosity Relation in GX 304-1 with RXTE
- Cyclotron resonant scattering feature simulations. I. Thermally averaged cyclotron scattering cross sections, mean free photon-path tables, and electron momentum sampling
- Compton scattering in strong magnetic fields: Spin-dependent influences at the cyclotron resonance
- Radiative Relativistic Magnetohydrodynamic Simulations of Neutron Star Column Accretion in Cartesian Geometry
- Relation of cyclotron resonant energy and luminosity in a strongly magnetized neutron star GRO J1008-57 observed by Insight-HXMT
- Cyclotron line formation by reflection on the surface of a magnetic neutron star
- Discovery of Two Cyclotron Resonance Scattering Features in X-ray Pulsar Cen X-3 by Insight-HXMT
- Torque reversal and cyclotron absorption feature in HMXB 4U 1538-522
- Discovery of cyclotron and narrow Fe K lines in HMXB GRO J1750-27
- Relativistic quantum-mechanical versus classical magnetic resonant scattering cross sections
Cited by in corpus (5)
- X-Ray Views of Galactic Accreting Pulsars in High-Mass X-Ray Binaries
- An in-depth analysis of the variable cyclotron lines in GX 3012
- Energy-resolved pulse profile changes in V 0332+53: Indications of wings in the cyclotron absorption line profile
- Cyclotron lines in subcritical X-ray pulsars: Monte Carlo simulations reveal the origin of the observed variability
- Flux variability of the "10 keV feature" of 4U 0115+63