This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Astronomers have confirmed that one of the fastest-changing stars ever observed has entered a new stage of its evolution, offering a rare opportunity to watch a star's life unfold on human timescales. Using the European Southern Observatory's Very Large Telescope (VLT) in Chile, researchers including scientists from The University of Manchester and the Valongo Observatory studied Sakurai's Object, a rare "born-again" star that unexpectedly burst back to life in 1996 after reaching the final stages of its evolution.
Their findings, published in Monthly Notices of the Royal Astronomical Society, show that the star has entered a new phase of its evolution, developing the powerful stellar wind characteristic of Wolf-Rayet stars. The research provides new insight into the final stages of stellar evolution and helps astronomers test theories that would otherwise take thousands or millions of years to verify. Professor Albert Zijlstra from the Jodrell Bank Center for Astrophysics at The University of Manchester said, "Most stars evolve so slowly that major changes take place over timescales far longer than a human lifetime.
As a result, we usually have to piece together snapshots of stellar evolution by comparing different stars at different stages of their lives. "Sakurai's Object offers something far rarer. It is one of the very few stars known to have changed dramatically within just a few decades, giving us the opportunity to watch stellar evolution unfold in real time.
"With our observations, we can test theories of how stars evolve and gain new insights into one of the shortest and least understood phases in the life of a dying star." The scientists believe the star was similar to our sun but had already ended nuclear burning and begun its journey toward becoming a white dwarf—the hot, dense core left behind after an ordinary star dies. It underwent a rare event known as a "very late thermal pulse," when a layer of helium deep inside the dead star suddenly reignites. The event caused the star to rapidly expand, cool and eject large amounts of material into space, temporarily returning to an earlier stage of its life and leading astronomers to describe it as a "born-again" star.
Only two stars have ever been directly observed undergoing this type of dramatic rebirth: Sakurai's Object and V605 Aquilae. Following its outburst, Sakurai's Object became hidden behind thick clouds of gas and dust released during the eruption, making it difficult to study directly. To investigate its current state, the team analyzed light collected by the Very Large Telescope and compared it with sophisticated computer models that simulate the atmospheres and powerful winds of Wolf-Rayet stars.
The observations revealed distinctive signatures of carbon and helium, allowing the researchers to find its temperature, chemical composition and the characteristics of its stellar wind. Their analysis suggests the star's surface temperature is currently between 27,000 K and 36,000 K (48,000°F–64,000°F), showing that it is reheating following its dramatic eruption nearly three decades ago. Zijlstra added, "One of the key questions is how quickly Sakurai's Object should recover after its dramatic eruption.
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