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University of Portsmouth researchers link supernovae to early rocky planet formation

Research from the University of Portsmouth indicates that the building blocks of rocky planets may have formed just 100 million years after the Big Bang, much earlier than previously believed. This cโ€ฆ

First supernovae may have seeded rocky planet building blocks 100 million years after the Big Bang
Phys.org โ€” 12 August 2026
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The building blocks of rocky planets may have begun forming just 100 million years after the Big Bang, according to new research from the University of Portsmouth. This finding suggests that the process of planet formation began much earlier than previously thought, long before the first galaxies formed.

This discovery is significant because it challenges existing theories about the timeline of cosmic evolution. Scientists have long believed that rocky planets could only emerge after the formation of stars and galaxies, which took hundreds of millions of years. The research indicates that supernovae, the explosive deaths of stars, played a crucial role in creating the necessary elements for planet formation during this early period. By providing a new understanding of how and when these building blocks came into existence, the study could reshape our knowledge of the universeโ€™s formative years.

The research team analyzed data from various astronomical observations and simulations. They found that supernovae produced heavy elements like carbon and oxygen, which are essential for forming rocky planets. This process likely occurred in isolated pockets of the early universe, where the conditions allowed for these elements to accumulate. The findings suggest that these building blocks could coalesce into planets relatively soon after their formation, raising exciting possibilities for the early solar systems that may have existed.

Looking ahead, this research opens new avenues for exploration in astrophysics and planetary science. Scientists may now focus on identifying remnants of these early rocky planets in our galaxy. Understanding the origins of such planets could also provide insights into the potential habitability of other celestial bodies. As researchers continue to refine their models and gather more data, the early universe may reveal even more secrets about the formation of planets and the conditions that foster life beyond Earth.

Read Full Story at Phys.org โ†’
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