How did the infant sun form? Scientists get surprising new insights from 4.6-billion-year-old space dust
space.com Sep 4, 2026

How did the infant sun form? Scientists get surprising new insights from 4.6-billion-year-old space dust

AI-summarised brief · reviewed before publication

Researchers analyzing calcium‑aluminum‑rich inclusions (CAIs) in the pristine Antarctic meteorite DOM 08006 have detected remanent magnetization that records a magnetic field up to 12 times stronger than Earth’s during the solar nebula phase, roughly 4.6 billion years ago. The findings suggest that magnetism, alongside gravity, helped flatten the collapsing gas cloud into the protoplanetary disk from which planets later formed. By isolating magnetic minerals within the CAIs—some of the oldest known solar‑system material—the team inferred that charged particles generated a sustained plasma field as the nascent Sun gathered mass. This early magnetic influence predates the formation of planets and offers a direct “fossil” of the Sun’s birth environment, revising long‑standing models of solar system evolution.

💡 Why It Matters

  • · The discovery provides the first concrete evidence that magnetic forces shaped the Sun’s birth disk, forcing scientists to rewrite the physics of planetary cradle formation.