Prospects for detection of the pair-echo emission from TeV gamma-ray bursts
arXiv:2405.07831 · doi:10.1051/0004-6361/202449305
Abstract
The intergalactic magnetic field (IGMF) present in the voids of large-scale structures is considered to be the weakest magnetic field in the Universe. Gamma-ray observations of blazars in the GeV-TeV domain have led to lower limits on the IGMF strength based on the search for delayed or extended emission. Nevertheless, these results have been obtained with strong assumptions placed on the unknown source properties. The recent discovery of TeV radiation from gamma-ray bursts (GRBs) has paved the way for IGMF studies with these bright transients. Among the current TeV-detected GRBs, GRB 190114C, located at a redshift of , is the best sampled. Therefore, it can be considered to be representative of the properties of GRBs in the VHE domain. In addition, GRB 221009A () is the brightest event ever detected. We present a phenomenological model based on the intrinsic properties of GRB 190114C and GRB 221009A to predict the delayed emission component (pair-echo) in the GeV-TeV band. We investigate the detectability of this component from low-redshift () GRBs for three values of IGMF strength ( G, G and G), different observational times ( hrs, hrs, and hrs) and source intrinsic properties. We find that for current and future generation -ray instruments, extending the observation for at least 3 hours after the GRB detection is a viable strategy for probing the IGMF. We also confirm that GeV-TeV observations of GRBs can probe IGMF strengths on the order of G, representing a competitive alternative to the current studies performed with active galactic nuclei (AGNs).
accepted for publication in A&A
References in corpus (28)
- Teraelectronvolt emission from the -ray burst GRB 190114C
- A very-high-energy component deep in the Gamma-ray Burst afterglow
- Observation of inverse Compton emission from a long -ray burst
- A tera-electronvolt afterglow from a narrow jet in an extremely bright gamma-ray burst 221009A
- Revealing x-ray and gamma ray temporal and spectral similarities in the GRB 190829A afterglow
- GRB 221009A, The BOAT
- Fermi-GBM Discovery of GRB 221009A: An Extraordinarily Bright GRB from Onset to Afterglow
- The Fermi GBM Gamma-Ray Burst Spectral Catalog: 10 Years of Data
- GRB 221009A: Discovery of an Exceptionally Rare Nearby and Energetic Gamma-Ray Burst
- Very high energy gamma-ray emission beyond 10 TeV from GRB 221009A
- A lower bound on intergalactic magnetic fields from time variability of 1ES 0229+200 from MAGIC and Fermi/LAT observations
- The Radio to GeV Afterglow of GRB 221009A
- Search for Magnetically Broadened Cascade Emission From Blazars with VERITAS
- Probing the Nature of the Weakest Intergalactic Magnetic Fields with the High Energy Emission of Gamma-Ray Bursts
- Gamma-ray bursts afterglow physics and the VHE domain
- Detectability of Pair Echos from Gamma-Ray Bursts and Intergalactic Magnetic Fields
- GRB 190114C: from prompt to afterglow?
- Blazar halos as probe for extragalactic magnetic fields and maximal acceleration energy
- The Linear Instability of Dilute Ultrarelativistic Pair Beams
- Properties of the Intergalactic Magnetic Field Constrained by Gamma-ray Observations of Gamma-Ray Bursts
- Plasma effects on relativistic pair beams from TeV blazars: PIC simulations and analytical predictions
- Suppression of the TeV pair-beam plasma instability by a tangled weak intergalactic magnetic field
- Secondary GeV-TeV emission from ultra-high-energy cosmic rays accelerated by GRB 221009A
- First constraints on the strength of the extragalactic magnetic field from -ray observations of GRB 221009A
- A delayed 400 GeV photon from GRB 221009A and implication on the intergalactic magnetic field
- Constraints on the intergalactic magnetic field strength from -ray observations of GRB 221009A
- Intergalactic magnetic field studies by means of -ray emission from GRB 190114C
- Search of the pair echo signatures in the high-energy light curve of GRB190114C