New research suggests that supermassive black holes that existed before the cosmos was 1 billion years old may have formed with a helping hand from dark matter, the universe’s most mysterious stuff.

Ever since the James Webb Space Telescope (JWST) first began reporting data back to Earth in the summer of 2022, it has been delivering a curious problem into the laps of scientists, finding supermassive black holes as early as 500 million years after the Big Bang. That is, however, an issue because the merger and feeding processes that allow black holes to reach masses of millions of billions of times that of the sun should take at least 1 billion years to reach fruition.

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One suggested mechanism for the early growth of black holes is the direct collapse of vast clouds of gas and dust to immediately form a seed black hole without the time it takes for a massive star to be born, live its life, and then die.

However, that process would still require stars shining on these clouds of matter, providing them with energy — but that’s rare. Too rare to explain the abundance of early supermassive black holes seen by JWST. That is, unless there is another energy source to help this process along.

“Our study suggests that decaying dark matter could profoundly reshape the evolution of the first stars and galaxies, with widespread effects across the universe,” team leader Yash Aggarwal of the University of California, Riverside, said in a statement. “With the JWST now revealing more supermassive black holes in the early universe, this mechanism may help bridge the gap between theory and observation.”

Journal of Cosmology and Astroparticle Physics.