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A rare X-ray flash from a supernova was detected by the Einstein Probe

Дата публикации: 18-08-2026 15:53:00


Using the Einstein Probe, astronomers have recently detected an X-ray flash originating from a supernova explosion. But following this event, the supernova exhibited unusual behavior, which may have led to the formation of a different type of star.


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An artist's illustration showing a star and planets.

ⓘ NASA - Unsplash

An artist's illustration showing a star and planets.

Using the Einstein Probe, astronomers have recently detected an X-ray flash originating from a supernova explosion. But following this event, the supernova exhibited unusual behavior, which may have led to the formation of a different type of star.

When a star reaches the final stages of its life after exhausting all its fuel, it may explode as a supernova. This phenomenon is one of the most powerful explosions observed in the universe. But beyond its devastating effects, this explosion can produce X-ray flashes, which can be detected by the Einstein Probe.

This probe is particularly valuable to astronomers. Indeed, it is capable of detecting these transient events, while other space telescopes were designed to detect gamma-ray bursts. As for X-rays, they are divided into several subcategories, such as X-ray flashes, which are extremely rare.

To understand the origin of this signal, a team of astronomers led by Gokul P. Srinivasaragavan of the University of Maryland has studied an X-ray flash named EP250827b. However, due to the low intensity of this signal, astronomers used the Zwicky Transient Facility and detected a supernova at the same location.

By studying this celestial object, known as SN 2025wkm, over several weeks, researchers have discovered that it is a Type Ic-BL supernova. In addition, during this event, the ejecta were traveling at a speed of about 25,000 miles per second.

But unlike other supernovae, its bolometric luminosity remained stable for about 20 days, which is a first for an X-ray flash supernova. Thus, to explain this behavior, some astronomers believe that an ultra-dense magnetar with an extremely powerful magnetic field may have formed following this event.

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Alexis Stegmann

Alexis Stegmann - Tech Writer - 731 articles published on Notebookcheck since 2025

I've been working in the field of web writing for several years, and I'm passionate about keeping readers up to date with the latest news on astronomy, technology, the world of video games and other exciting subjects. In particular, I've had the opportunity to work on a number of websites, which has enabled me to cover a wide range of subjects. In my personal life, I'm passionate about a wide range of subjects, including astronomy, video games, history and science. I'm also drawn to psychology, which is a subject that deserves greater documentation and recognition.

Alexis Stegmann, 2026-08-18 (Update: 2026-08-18)

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