Triggering the Untriggered: The First Einstein Probe-Detected Gamma-Ray Burst 240219A and Its Implications
Yi-Han Iris Yin, Bin-Bin Zhang, Jun Yang, Hui Sun, Chen Zhang, Yi-Xuan, Shao, You-Dong Hu, Zi-Pei Zhu, Dong Xu, Li An, He Gao, Xue-Feng Wu, Bing, Zhang, Alberto Javier Castro-Tirado, Shashi B. Pandey, Arne Rau, Weihua Lei,, Wei Xie, Giancarlo Ghirlanda, Luigi Piro, Paul O'Brien

TL;DR
This paper reports the first detection of a gamma-ray burst by the Einstein Probe, analyzes its spectral and temporal properties, and discusses its implications for understanding different classes of GRBs and their physical origins.
Contribution
It presents the first Einstein Probe detection of a GRB, detailed spectral analysis, and insights into the burst's physical mechanisms and classification.
Findings
GRB 240219A was detected with a long duration and a spectral cutoff power-law model.
The burst is classified as an X-ray rich GRB with a high peak energy.
Linking spectral components suggests a Poynting flux-dominated outflow.
Abstract
The Einstein Probe (EP) achieved its first detection and localization of a bright X-ray flare, EP240219a, on 2024 February 19, during its commissioning phase. Subsequent targeted searches triggered by the EP240219a alert identified a faint, untriggered gamma-ray burst (GRB) in the archived data of Fermi Gamma-ray Burst Monitor (GBM), Swift Burst Alert Telescope (BAT), and Insight-HXMT/HE. The EP Wide-field X-ray Telescope (WXT) light curve reveals a long duration of approximately 160 s with a slow decay, whereas the Fermi/GBM light curve shows a total duration of approximately 70 s. The peak in the Fermi/GBM light curve occurs slightly later with respect to the peak seen in the EP/WXT light curve. Our spectral analysis shows that a single cutoff power-law (PL) model effectively describes the joint EP/WXT--Fermi/GBM spectra in general, indicating coherent broad emission typical of GRBs.…
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Taxonomy
TopicsGamma-ray bursts and supernovae
