The origin of extragalactic fast X-ray transients (EFXTs) remains a fundamental open question in high-energy astrophysics. The Einstein Probe (EP) mission provides a transformative opportunity to investigate their nature. While mounting observations of EP-discovered EFXTs (EP-EFXTs) suggest a possible connection to long gamma-ray bursts (lGRBs), an in-depth comparative analysis between them remains lacking. Here, we present a comparative analysis of their cosmic formation histories, revealing that EP-EFXTs and lGRBs share a similar evolutionary trend-showing a marked decline at z<1.0 and a plateau beyond 1.0<z<5-which clearly distinguishes them from short GRBs. This result is derived from a rigorously selected sample of EP-EFXTs, using Lynden-Bell's c− method to reconstruct, for the first time, the luminosity function and formation rate of EP-EFXTs without any assumptions. Our findings provide independent evidence that EP-EFXTs and lGRBs may originate from a common progenitor channel.
@article{arxiv.2510.10267,
title = {New Evidence for Extragalactic Einstein Probe Transients associated with Long Gamma-ray Bursts},
author = {Qin-Mei Li and Qi-Bin Sun and Sheng-Bang Qian and Fu-Xing Li},
journal= {arXiv preprint arXiv:2510.10267},
year = {2025}
}
Comments
8 pages,3 figures and 1 table, accepted publication in ApJL on November 14, 2025