A solar-like dynamo driven by magnetic buoyancy
In plain English
AI plain-English summaryDeep inside the Sun, magnetic buoyancy—the tendency for magnetised plasma to float like a hot air balloon—may be doing more than just carrying magnetic fields to the surface. Researchers have shown in computer models that this instability, combined with strong shear in a thin layer called the tachocline, can generate the Sun’s large-scale magnetic field and produce a cyclic, migrating pattern like the solar cycle. They now plan to test this in more realistic spherical geometries. This matters because the solar dynamo—the engine behind sunspots, flares, and space weather—remains poorly understood. Existing models rely on processes that are hard to observe or may not operate as assumed. If magnetic buoyancy alone can drive the cycle, it would simplify and sharpen our picture of how stars like the Sun generate magnetism. The work is fundamental science with no immediate practical application. But a better grasp of the solar dynamo could eventually improve predictions of space weather, which disrupts satellites, power grids, and communications. Past fundamental research on stellar magnetism has similarly led to unexpected tools for navigation and plasma physics.
View original technical description
View the original record at the funder ↗
Researchers
Related Research
Grants with similar aims, by meaning.
Original classification
Research and InnovationPlain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research. Is something wrong? Let us know