7–11 Sept 2026
Cefalù
Europe/Rome timezone

Modelling the time-dependent spectral evolution of accretion disks during Type-I X-ray bursts

Not scheduled
20m
Cefalù

Cefalù

Cefalù, province of Palermo, Sicily. Sala delle Capriate in the Town Hall (Piazza Duomo).
Poster

Speaker

Mr Simo van de Vosse (University of Amsterdam)

Description

Type-I X-ray bursts in neutron star (NS) low mass X-ray binaries are highly energetic events with the power to dynamically change the accretion flow. Studying such dynamical effects is a powerful new method that could shed light on accretion disk physics, coronae and the origin of relativistic jets. Correctly modelling time resolved X-ray spectra during these bursts allows for measurements of NS radii, which can be used to constrain the NS equation of state. Observations of Type-I X-ray bursts have shown that the emission from the accretion environment often increases during thermonuclear bursts. Although previously attributed to enhanced accretion due to Poynting-Robertson drag, recent theoretical work predicts that disk heating plays a more dominant role in the increase of persistent emission. This implies that the disk component changes in spectral shape during the burst; a phenomenon often not taken into account when fitting models to observed data. Using semi-analytical calculations, I obtain a time-dependent spectral model describing X-ray bursts of various luminosities irradiating standard Shakura-Sunyaev disks with different persistent accretion rates. The models predictions coincide with recent insights from observations and numerical simulations: (1) the increase by a factor of $\sim10-100$ in emission from the accretion flow is dominated by the heated disk rather than enhanced accretion; (2) after the burst, a dip in emission is expected due to a carved out inner disk. Incorporating time evolution in the spectral models promises to be an important step towards an accurate understanding of Type-I X-ray bursts.

Author

Mr Simo van de Vosse (University of Amsterdam)

Co-authors

Dr Jakob van den Eijnden (University of Amsterdam) Nathalie Degenaar (University of Amsterdam) Dr Oliver Porth (University of Amsterdam)

Presentation materials