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Wild Theory Suggests Dark Matter Could Make Stars Immortal

Stars very close to the center of our galaxy could be fueled by dark matter in perpetuity, according to a team of astronomers who recently studied the distant light sources.

Stars very close to the center of our galaxy could be fueled by dark matter in perpetuity, according to a team of astronomers who recently studied the distant light sources.

Suggested ReadingJustice Department to Criminally Charge Boeing for Breaching 737 Max Settlement: ReportsApple Rumored to Be Working on AirPods With Built-in CamerasOur Best Look Yet at Deadpool & Wolverine's Supervillain, and a Familiar FriendFlorida Family Takes NASA to Court Over Home Damaged by Space Trash CCShare SubtitlesOffEnglishJustice Department to Criminally Charge Boeing for Breaching 737 Max Settlement: ReportsApple Rumored to Be Working on AirPods With Built-in CamerasOur Best Look Yet at Deadpool & Wolverine's Supervillain, and a Familiar FriendFlorida Family Takes NASA to Court Over Home Damaged by Space Trash CCShare SubtitlesOffEnglishRelated ContentRelated ContentAs reported by Space.com, the research team posits that these weird stars may be accreting dark matter, which they then use as fuel to keep burning. Since models estimate there is plenty of dark matter near the galaxy’s core, the stars are “forever young,” as study lead author Isabelle John, an astrophysicist at the Kavli Institute for Particle Astrophysics and Cosmology told Space.com. Effectively, the stars have a long, long way to go before they start running low on fuel. The team’s paper is currently hosted on the preprint server arXiv, meaning it has not yet gone through the process of peer review.AdvertisementDark matter appears to make up 27% of the universe, but it has so far eluded direct detection. In other words, astronomers cannot see it in any band of light using existing instruments. Instead, dark matter is seen through its effects on objects that are visible, from distant stars to huge clusters of them. Though dark matter is invisible to us, its gravitational effects are apparent. The jury’s out on whether there is one culprit for dark matter—a theoretical particle like the axion, for example—or if there are multiple unknown things that we have given the umbrella term of dark matter.AdvertisementThe newly introduced paper is hardly the first to explore how dark matter could interact with stars. Just earlier this year, a different team of researchers proposed that neutron stars—extremely dense stellar remnants—“Star formation models suggest that stars cannot form within [0.326 light-years] of the central black hole, where the S-cluster stars are found,” the researchers wrote. “Rather, the stars must have formed elsewhere and migrated towards the Galactic Center. Conversely, observations suggest that stars in this region are young [less than or approximately equal to 15 million years old], which indicates that the stars might have formed more locally.”AdvertisementIn their letter, the team also introduced a dark matter star version of the By charting out the ways these potentially dark matter-fueled stars evolve and age, the team could better characterize how dark matter manifests itself in the universe and interacts with ordinary matter. The team also noted that AdvertisementMore:

Effectively, the stars have a long, long way to go before they start running low on fuel.
Lucas Gallagher · Thehackingpost

Based on reporting by gizmodo.com.

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AI transparency. This article was produced with the assistance of artificial intelligence and published under human editorial oversight. AI systems can make mistakes. Read how we use AI (EU AI Act, Art. 50).
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