Einstein Probe Detects Mysterious X-ray Flare with Record-Long Emission-OxBig News Network

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Fast Evolving X-ray Transients (FEXTs) are intense bursts of sentimental X-ray emissions that may final for minutes to hours with a variety of luminosities. Due to their enigmatic nature, FEXTs have been a significance for scientists. Einstein Probe (EP) is among the essential house telescopes for the search and investigation of FEXTs. An worldwide group of astronomers utilizing the Einstein Probe reviews the invention of a brand new peculiar fast-evolving X-transient. The newfound transient displays an unprecedentedly long-lasting X-ray emission.

A Puzzling Long-Lived X-ray Transient

The discovering was detailed in a paper printed May 12 on the arXiv preprint server. According to the printed paper, the newfound peculiar FEXT, dubbed EP241021a, was detected on Oct 21, 2024, with the assistance of EP’s wide-field X-ray telescope (WXT). EP241021a was recognized by WXT as an intense flare, which lasted for roughly 92 seconds and reached a luminosity of about one quindecillion erg/s. The X-ray spectrum of the flare was discovered to be comparatively onerous with a photon index of 1.8.

The group of astronomers, led by Xinwen Shu of the Anhui Normal University in China, has concluded that EP241021a is a particularly uncommon transient primarily as a result of its prolonged emission interval. Follow-up observations of the flare as much as 79 days after its detection revealed that its X-ray gentle curve exhibits a virtually plateau part for the primary 7 days, which is adopted by a steep decline in the course of the interval of about 30 days. Afterward, the X-ray emission quickly drops underneath the detection stage.

The researchers additionally detected vital multiwavelength alerts related to EP241021a. About 1.8 days after the preliminary X-ray detection, optical emissions had been additionally detected. This emission is probably going related to the flare’s afterglow.

Possible origins

The origin of FEXTs is puzzling. Astronomers attempt to clarify their origin consider a number of eventualities; for example, stellar flares, supernova shock breakouts, or lengthy gamma-ray bursts (GRBs).
Trying to clarify the origin of EP241021a, the authors of the paper favor two eventualities. These are: a magnetar engine, involving a extremely magnetized neutron star, or a jetted tidal disruption occasion (TDE), the place a star is consumed by a black gap.

 

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