The First GECAM Observation Results on Terrestrial Gamma-ray Flashes and Terrestrial Electron Beams
arXiv:2306.10255 · doi:10.1029/2022GL102325
Abstract
Gravitational-wave high-energy Electromagnetic Counterpart All-sky Monitor (GECAM) is a space-borne instrument dedicated to monitoring high-energy transients, including Terrestrial Gamma-ray Flashes (TGFs) and Terrestrial Electron Beams (TEBs). We implemented a TGF/TEB search algorithm for GECAM, with which 147 bright TGFs, 2 typical TEBs and 2 special TEB-like events are identified during an effective observation time of 9 months. We show that, with gamma-ray and charged particle detectors, GECAM can effectively identify and distinguish TGFs and TEBs, and measure their temporal and spectral properties in detail. A very high TGF-lightning association rate of 80\% is obtained between GECAM and GLD360 in east Asia region.
The paper was accepted by Geophysical Research Letters on June 16th, 2023
References in corpus (7)
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- The design and performance of GRD onboard the GECAM satellite
- Search for Gamma-Ray Bursts and Gravitational Wave Electromagnetic Counterparts with High Energy X-ray Telescope of \textit{Insight}-HXMT
- Constraints to do realistic modeling of the electric field ahead of the tip of a lightning leader
- On the High-Energy Spectral Component and Fine Time Structure of Terrestrial Gamma Ray Flashes
- GECAM Localization of High Energy Transients and the Systematic Error
- Burst search method based on likelihood ratio in Poisson Statistics
Cited by in corpus (4)
- Observation of spectral lines in the exceptional GRB 221009A
- Relation between the keV-MeV and TeV emission of GRB 221009A and its implications
- The GECAM Ground Search System for Gamma-ray Transients
- Extending the short gamma-ray burst population from sub-threshold triggers in Fermi/GBM and GECAM data and its implications