Exploring the central engines of gamma-ray bursts from prompt light curves
arXiv:2602.05587 · doi:10.1051/0004-6361/202556841
Abstract
Hyperaccreting stellar-mass black hole systems are leading candidates for the central engines of gamma-ray bursts (GRBs). Their jets are thought to be powered by either the Blandford-Znajek (BZ) process or neutrino-dominated accretion flows (NDAFs), but discriminating between these mechanisms remains challenging. To address this, we propose using the luminosity decay slope (parameter d) of GRB light curves to distinguish between the BZ and NDAF mechanisms, thereby linking the light-curve morphology to the central engine physics. By analysing 85 single-peaked GRBs with fast-rise, exponential-decay (FRED) profiles observed by Swift/BAT using 64 ms background-subtracted light curves, we fit the decay slope (parameter d) with the empirical Kocevski-Ryde-Liang (KRL) function and compare the results with theoretical predictions for the BZ (d approximately 1.67) and the NDAF (d approximately 3.7 to 7.8) mechanisms. We find that the decay slope (parameter d) can differentiate central engine mechanisms, with 15 GRBs consistent with the BZ mechanism and 22 supporting the NDAF mechanism. However, most events exhibit slopes within the range between 2 and 4, suggesting a hybrid of mechanisms, with NDAF being dominant.
14pages, 6 figures and 1 table; accepted by Astronomy and Astrophysics
References in corpus (13)
- The Hubble Diagram to Redshift >6 from 69 Gamma-Ray Bursts
- Neutrino-Cooled Accretion Disks around Spinning Black Hole
- The Millisecond Magnetar Central Engine in short GRBs
- Mass Fall-back and Accretion in the Central Engine of Gamma-Ray Bursts
- Hyper-accreting black hole as GRB central engine. I: Baryon loading in GRB jets
- Properties of Gamma-Ray Burst Progenitor Stars
- Giant X-ray Bump in GRB 121027A: Evidence for Fall-back Disk Accretion
- Hyperaccreting Black Hole as Gamma-Ray Burst Central Engine. II. Temporal evolution of central engine parameters during Prompt and Afterglow Phases
- Jet Luminosity of Gamma-ray Bursts: Blandford-Znajek Mechanism v.s. Neutrino Annihilation Process
- Black hole hyperaccretion inflow-outflow model. I. long and ultra-long gamma-ray bursts
- Numerical and analytical solutions of Neutrino-Dominated Accretion Flows with a Non-Zero Torque Boundary Condition and its applications in Gamma-ray Bursts
- Testing Blandford-Znajek mechanism in black hole hyperaccretion flows for long-duration gamma-ray bursts
- Constraining Properties of GRB Central Engines with X-ray flares