GRB minimum variability timescales with Fermi/GBM
arXiv:2508.08995 · doi:10.1051/0004-6361/202555418
Abstract
Context. Gamma-ray bursts (GRBs) have traditionally been classified by duration into long (LGRBs) and short (SGRBs), with the former believed to originate from massive star collapses and the latter from compact binary mergers. However, events such as the SGRB 200826A (coming from a collapsar) and the LGRBs 211211A and 230307A (associated with a merger) suggest that duration-based classification could be sometimes misleading. Recently, the minimum variability timescale (MVT) has emerged as a key metric for classifying GRBs. Aims. We calculate the MVT, defined as the full width at half maximum (FWHM) of the narrowest pulse in the light curve, using an independent dataset from Fermi/GBM and we compare our results with other MVT definitions. We update the MVT-T90 plane and analyse peculiar events like long-duration merger candidates 211211A, 230307A, and other short GRBs with extended emission (SEE-GRBs). We also examine extragalactic magnetar giant flares (MGFs) and explore possible new correlations with peak energy. Methods. We used the MEPSA algorithm to identify the shortest pulse in each GRB light curve and measure its FWHM. We calculated the MVT for around 3700 GRBs, 177 of which with spectroscopically known redshift. Results. SEE-GRBs and SGRBs share similar MVTs (from few tens to a few hundreds of ms), indicating a common progenitor, while extragalactic MGFs exhibit even shorter values (from few ms to few tens of ms). Our MVT estimation method consistently yields higher values than another existing technique, the latter aligning with the pulse rise time. For LGRBs, we confirmed the correlations of MVT with peak luminosity and Lorentz factor. Conclusions. We confirmed that, although MVT alone cannot determine the GRB progenitor, it is a valuable tool when combined with other indicators, helping to flag long-duration mergers and distinguish MGFs from typical SGRBs.
Accepted by A&A, 14 pages, 18 figures. Table 1 data will be available at the CDS
References in corpus (28)
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Long gamma-ray bursts and core-collapse supernovae have different environments
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- No supernovae associated with two long-duration gamma ray bursts
- An enigmatic long-lasting gamma-ray burst not accompanied by a bright supernova
- Short Duration Gamma-Ray Bursts with Extended Emission from Proto-Magnetar Spin-Down
- REM observations of GRB 060418 and GRB 060607A: the onset of the afterglow and the initial fireball Lorentz factor determination
- Fallback accretion in the aftermath of a compact binary merger
- Hyper-accreting black hole as GRB central engine. I: Baryon loading in GRB jets
- Bulk Lorentz factors of Gamma-Ray Bursts
- Astrophysics: A burst of new ideas
- Instabilities in the time-dependent neutrino disc in Gamma-Ray Bursts
- A bright gamma-ray flare interpreted as a giant magnetar flare in NGC 253
- Gamma-ray Burst 080319B: Evidence for Relativistic Turbulence, Not Internal Shocks
- Uncovering the Intrinsic Variability of Gamma-ray Bursts
- The structure of weakly-magnetized -ray burst jets
- Rapid Spectral Variability of a Giant Flare from a Magnetar in NGC 253
- Identification of a Local Sample of Gamma-Ray Bursts Consistent with a Magnetar Giant Flare Origin
- An Unambiguous Separation of Gamma-Ray Bursts into Two Classes from Prompt Emission Alone
- A New Discriminator for Gamma-Ray Burst Classification: The Epeak-Fluence Energy Ratio
- Evidence for two distinct populations of kilonova-associated Gamma Ray Bursts
- Determine the Lorentz factor and the viewing angle of GRB 170817A
- A short gamma-ray burst from a proto-magnetar remnant
- Characteristics of Long Gamma-Ray bursts in the Comoving Frame
- The properties of prompt emission in short GRBs with extended emission observed by {\em Fermi}/GBM
- Distribution of number of peaks within a long gamma-ray burst
- The puzzling long GRB 191019A: Evidence for Kilonova Light
- Gamma-ray burst taxonomy: looking for the third class on the spectral peak energy-duration plane in the rest frame