Space

NASA video shows a giant churning tornado on the sun as tall as 14 Earths, hurling plasma into space

A video taken on March 17, 2023 shows a solar tornado spinning above the sun's surface. NASA / Solar Dynamics Observatory
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NASA's Solar Dynamics Observatory captured video of a fiery, churning tornado on the surface of the sun last week.

The tornado-shaped prominence first began forming on March 14, before exploding in a cloud of magnetized gas on March 18, hurling plasma into space as it went, according to SpaceWeather.

"This 14-Earths-tall swirling column of plasma was raining moon-sized gobs of incandescent material on the sun," astrophotographer Andrew McCarthy tweeted on Saturday. McCarthy wrote that he spent three hours with his solar telescope pointed at the sun, and he captured a jaw-dropping video of what the tornado looked like.

The event made for a stunning spectacle, but it won't harm us on Earth.

"What we are seeing here is quite large scale," Sven Wedemeyer, a professor of solar physics from the University of Oslo who has studied this phenomenon, told Insider.

It's the latest in a series of mind-boggling, but mostly harmless, events on the sun, as our star ramps up to the peak of its 11-year solar cycle.

The tornado itself is only the visible part of the eruption

The tornado is shown here on the surface of the sun.
The tornado, near the north pole of the sun.  SDO/NASA

The magnetic structure that caused this tornado is actually a lot bigger than what we're seeing.

"What we're seeing here is polar crown filament (PCF). A filament is a huge, twisted magnetic stricture that sits above the sun's surface, sometimes for months," Mathew Owens, a professor of space physics at the University of Reading, told Insider in an email. 

The sun is a big ball of boiling gas and plasma, comprised of hot charged particles. As these move around the sun, they create magnetic fields that erupt through the solar surface.

Some of these magnetic fields are huge, and stretch out toward space in an arc, anchored to the surface by several points. These points are called filaments or prominences, like the one shown below.

Image of massive solar prominence.
A long solar prominence erupting off the surface, taken by the Solar Dynamic Observatory on August 31, 2012.  NASA Goddard Space Flight Center

In addition to prominences and filaments, solar tornados are another example of points that anchor this invisible magnetic field to the sun, Wedemeyer said. 

Eventually, the filaments "decay away or erupt into space," Owens said. 

In this tornado's case, as the filament broke apart, charged particles were blasted away from the sun, hurling at breakneck speeds through space. If it were headed toward Earth, we might see more auroras or disruptions to power grids. But there's no risk of that here since our planet was not in the eruption's path.

"After eruption, this one headed off over the north pole of the sun, so definitely not coming towards us or any of the other planets," Owens said. 

Unlike our own tornadoes, solar tornadoes may not actually spin

Though the name "tornado" suggests the structure spins, this might be a misnomer, Wedemeyer said. 

"You basically have two possibilities. Either you have some structure that's held together by magnetic fields that's actually truly rotating, or what you're seeing is plasma — hot gas — that's following some pre-twisted magnetic field and gives the appearance to be rotating, but is just moving up and down like a slight spiral," said Wedemeyer.  

"One theory is if there's true rotation in there, this may trigger or destabilize the whole structure, which may contribute to this eruption," said Wedemeyer. 

The sun is getting more active 

A video from NASA's Solar Dynamics Observatory shows the massive hole in the sun's atmosphere.
A video from NASA's Solar Dynamics Observatory shows the massive hole in the sun's atmosphere.  NASA/Solar Dynamics Observatory

We're likely to see more striking solar phenomena in coming years as the sun is reaching a solar maximum, a peak of activity that happens every 11 years or so. 

Alongside these beautiful structures, we're also seeing more sunspots appear. A huge sunspot, seen above, recently appeared on the surface of the sun.

This could send solar winds our way in the coming days, bringing beautiful Northern Lights

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Morgan McFall-Johnsen was a science reporter at Business Insider. She covered climate change, weather, Earth sciences, and space, as well as health and medicine, environmental issues, and occasionally archaeology.Email her at mmcfalljohnsen@gmail.com and follow her on X @MorganMJohnsen.Expertise
  • Climate change and climate-crisis solutions
  • Extreme weather (heat, drought, floods, fires, hurricanes)
  • NASA and other space agencies
  • Commercial space industry (SpaceX, Blue Origin, satellite constellations)
  • Astronomy and physics (planets, galaxies, the sun, black holes, gravitational waves)
Morgan has interviewed astronauts aboard the International Space Station and published exclusive in-depth accounts of early COVID-19 outbreaks on cruise ships.She has appeared on NBC, Scripps News, Sirius XM, C-SPAN, and NPR to discuss climate change, extreme weather, Mars missions, the space race, and far-right extremism. She’s previously written for Backpacker Magazine, Outside Business Journal (formerly SNEWS), and Popular Science.She holds a Bachelor of Science in Journalism from Northwestern University, where she also studied environmental policy and French. She was a 2022 Logan Science Journalism Fellow at the Marine Biological Laboratory and a 2023 Columbia Energy Journalism Fellow.Popular stories
Grace was a politics and business reporter at Business Insider, with a particular focus on topics related to the Department of Government Efficiency. She was previously a homepage and breaking news reporter at BI and an associate producer for BI's breaking news podcast, The Refresh. She has a Master of Science from Columbia University Graduate School of Journalism with a focus on investigative journalism and audio/radio production. 
Doctor Marianne Guenot is a science reporter based in the UK who writes about health, AI, nuclear sciences, archeology, solar and planetary sciences, space exploration, and the commercial and political impact of science and tech. As part of her work, she visited the world's first final repository for nuclear waste, probed the economy of the climate crisis, untangled the complex factors playing into how the food chain pushes a health and climate crisis, tracked mysterious uranium cubes from the Manhattan project back to a Germany first prototype nuclear reactor, examined the motivations behind a tech tycoon's disastrous exploration of the deep sea, and deciphered the intricate business case behind NASA's return to the moon.Marianne holds a master's and Ph.D. in biomedicine and a master's degree in science communication. She worked with Business Insider from 2021 to 2024. Before then, she edited news and opinion at The Lancet and Nature Medicine. There, she wrote editorials read by leading policymakers. Selected works include.