A Unified Model for the Emission of Supernova-Associated Fast X-ray Transients: Case Studies of EP240414a, EP250108a, and GRB 171205A
Yu-Fei Li, Da-Bin Lin, Jia Ren, Zhi-Lin Chen, En-Wei Liang
astro-ph.HE
Submitted: 2026-06-26
Comments: 22page,7figures
License: http://creativecommons.org/publicdomain/zero/1.0/
The gist: The Einstein Probe (EP) has detected several Fast X-ray Transients (FXTs) associated with broad-lined Type Ic supernovae (SNe), including EP240414a and EP250108a.
Terminology
Abstract
The Einstein Probe (EP) has detected several Fast X-ray Transients (FXTs) associated with broad-lined Type Ic supernovae (SNe), including EP240414a and EP250108a. The observations reveal common features among these FXTs, but the corresponding physical origin remains debated. By comparing the FXTs with low-luminosity gamma-ray bursts (e.g., GRB 171205A), we propose a unified model that explains the common features in these events. In this model, a rapidly spinning magnetar generates a collimated Poynting flux-dominated jet and an isotropic wind. As the jet propagates through the stellar envelope, it generates a hot cocoon. In addition, a pulsar wind nebula (PWN) is formed during the interaction of the wind and the ejecta. As the surrounding cocoon gradually becomes transparent, the emission from the PWN escapes and is observed. This model provides a unified explanation for the observations: (1) Early thermal emission originates from the cocoon; (2) Mid-term non-thermal emission comes from the PWN; (3) Late-term emission originates from SNe driven by 56 Ni radioactive decay and magnetar. (4) The X-ray afterglows originate from the structured jet. Our research thus provides a natural explanation for the observed thermal-to-nonthermal evolution in such FXTs and reveals their shared physical origin with some GRB-SNe.
Sources
- The curious case of EP241021a: Unraveling the mystery of its exceptional rebrightening
- SNIa light curves and radioactive decay
- The kangaroo's first hop: the early fast cooling phase of EP250108a/SN 2025kg
- Velocity evolution of broad-lined type-Ic supernovae with and without gamma-ray bursts
- The soft X-ray transient EP241021a: A cosmic explosion with a complex off-axis jet and cocoon from a massive progenitor
- An extremely soft and weak fast X-ray transient associated with a luminous supernova
- EP 250108a/SN 2025kg: Observations of the most nearby Broad-Line Type Ic Supernova following an Einstein Probe Fast X-ray Transient
- EP250108a/SN 2025kg: A Jet-Driven Stellar Explosion Interacting With Circumstellar Material
- EP241021a: A catastrophic collapse/merger of compact star binary leading to the formation of a remnant millisecond magnetar?
- EP241021a: a months-duration X-ray transient with luminous optical and radio emission
- Radio observations point to a moderately relativistic outflow in the fast X-ray transient EP241021a
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