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Study finds 40-ton black holes may exist inside stars with dark matter aid

A study indicates that black holes as light as 40 tons could exist within stars, potentially aided by dark matter. This discovery could significantly enhance our understanding of black holes and the โ€ฆ

A black hole as light as 40 tons can exist inside a star if dark matter helps
Phys.org โ€” 5 September 2026
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A recent study suggests that a black hole weighing as little as 40 tons could exist within a star, potentially thanks to the influence of dark matter. This finding has emerged from ongoing research into the properties of black holes and the mysterious role dark matter plays in the universe. The implications of this discovery could reshape our understanding of both black holes and the composition of the cosmos.

The concept of black holes has evolved significantly since Stephen Hawking's groundbreaking prediction in 1974, which established that black holes are not completely black but emit radiation and lose mass over time. This radiation, known as Hawking radiation, indicates that smaller black holes evaporate faster than larger ones. The idea that a very lightweight black hole could form within a star adds a new layer of complexity to our understanding of stellar evolution and the lifecycle of stars. The presence of dark matter, which makes up about 27% of the universe's mass-energy content, may provide the necessary conditions for such lightweight black holes to form.

Researchers are excited about the potential to observe these lightweight black holes, as they could offer vital clues about dark matter and its interactions. Theoretical models suggest that the gravitational effects of dark matter could allow for black holes to exist at this much lower mass than previously thought. If confirmed, this could lead to new avenues of research into how black holes influence their surroundings and how they might contribute to the formation of galaxies.

Looking ahead, scientists will likely focus on developing methods to detect these small black holes, possibly through gravitational wave astronomy or other observational techniques. Understanding these lightweight black holes could offer a deeper insight into the fabric of the universe and the fundamental forces at play. As researchers continue to explore the relationship between dark matter and black holes, we may soon discover how these cosmic phenomena shape the universe on both large and small scales.

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