Level 1 - Absolute Beginner
There is a very big telescope in Hawaii. It looks at the Sun.
The telescope took the clearest pictures ever of the Sun's surface.
In the pictures, scientists saw tiny spinning circles. They are only about 20 kilometres wide.
These circles are like the swirls in a river. Scientists think they help move heat and energy on the Sun.
- telescope
- a tool used to look at things that are very far away
- Sun
- the star that gives Earth light and heat
- picture
- an image of something
- surface
- the outside or top part of something
- spin
- to turn around and around quickly
- wide
- measuring a certain distance from side to side
- swirl
- a twisting, turning movement
- energy
- the power that makes things move, heat up or shine
Level 2 - Elementary
The Daniel K. Inouye Solar Telescope sits on the mountain Haleakala on the Hawaiian island of Maui. With a mirror four metres across, it is the largest solar telescope in the world.
It has now produced the highest resolution images ever taken of the Sun's visible surface, called the photosphere. In them, scientists found spinning vortices of plasma. The smallest are only about 20 kilometres wide, which is tiny compared with the Sun itself.
The vortices form where magnetic structures meet. They are created by the Kelvin Helmholtz instability, the same effect that curls the top of a breaking ocean wave and makes the banded clouds on Jupiter.
The results appeared in the journal Nature on 5 August 2026. The study was led by David Kuridze with colleagues from the National Solar Observatory and the Max Planck Institute for Solar System Research.
- mirror
- a polished surface that reflects light, used inside a telescope
- resolution
- how much fine detail an image can show
- photosphere
- the visible surface layer of the Sun
- vortex
- a mass of spinning fluid or gas
- plasma
- a very hot gas whose particles carry an electric charge
- magnetic
- relating to the force that attracts or pushes certain materials
- instability
- a condition in which something easily breaks into motion or change
- journal
- a publication where scientists report their research
Level 3 - Intermediate
The National Science Foundation's Daniel K. Inouye Solar Telescope, a four metre instrument perched on Haleakala on Maui, has delivered the highest resolution images ever captured of the solar photosphere. What they show is not a smooth surface but one covered in spinning vortices of plasma, the narrowest of them measuring roughly 20 kilometres across.
The physics behind the swirls is familiar from far more ordinary settings. The vortices arise from the Kelvin Helmholtz instability, the shear driven process that curls the crest of a breaking wave and organises the banded cloud structures of Jupiter. Seeing it operate on the Sun at this scale required an instrument capable of resolving features smaller than a small city.
The paper, titled Ubiquitous Kelvin Helmholtz instabilities driving plasma mixing on the Sun, was published in Nature on 5 August 2026 and led by David Kuridze, working with colleagues at the National Solar Observatory and the Max Planck Institute for Solar System Research. The word ubiquitous is doing real work in that title: the team reports that the vortices appear continuously, wherever the magnetic field is strong enough to sustain them.
Their significance lies in what they might explain. The vortices mix magnetised and non magnetised plasma very efficiently at the surface, and they can twist magnetic field lines persistently rather than in isolated bursts. That offers a plausible route for magnetic energy to travel upward from the photosphere into the Sun's atmosphere, which is relevant to two long standing puzzles: why the outer corona is roughly a million degrees hotter than the surface beneath it, and how the Sun's magnetic field manages to reverse itself every eleven years.
- instrument
- a scientific device built to make measurements or observations
- shear
- the sliding of one layer of fluid past another at a different speed
- resolve
- to show separate details clearly rather than as a blur
- ubiquitous
- present everywhere at once
- sustain
- to keep something going over time
- magnetic field line
- an imaginary line showing the direction of a magnetic force
- corona
- the Sun's outermost atmosphere, visible during a total eclipse
- reverse
- to change to the opposite direction or state
Level 4 - Advanced
Solar physics has spent decades explaining the Sun with structures nobody had actually seen. The theory required small scale motions to shuffle magnetic energy about, but the resolution needed to observe them lay just beyond reach, so the motions remained an inference. The National Science Foundation's Daniel K. Inouye Solar Telescope, a four metre aperture instrument on Haleakala, has now closed that gap, returning images of the photosphere sharp enough to resolve plasma vortices as narrow as 20 kilometres.
The mechanism turns out to be unremarkable, which is precisely what makes it useful. These are Kelvin Helmholtz instabilities, the shear driven curl that appears wherever two fluids slide past one another at different velocities, familiar from the breaking crest of a wave and from the banded structure of Jupiter's atmosphere. Reported in Nature on 5 August 2026 under the title Ubiquitous Kelvin Helmholtz instabilities driving plasma mixing on the Sun, the work was led by David Kuridze alongside collaborators at the National Solar Observatory and the Max Planck Institute for Solar System Research. Invoking no exotic solar physics is a strength, since the instability's behaviour is already well characterised in laboratory and planetary settings.
The claim that carries the weight is ubiquity. An occasional vortex would be a curiosity; a population of them forming continuously at the boundaries of magnetic structures, wherever the field is sufficiently strong, is a persistent process operating across the whole surface. Continuity is what converts a phenomenon into a mechanism, because energy transport budgets are governed by processes that run without interruption, not by rare and spectacular events.
Two open questions stand to benefit. The corona sustains temperatures roughly a million degrees above the photosphere directly beneath it, an inversion that any complete solar model must account for, and vortices that efficiently blend magnetised with non magnetised plasma provide a channel for magnetic energy to migrate upward from the surface into the atmosphere. The second concerns the eleven year polarity reversal, a turnover fast enough that existing models struggle to dissipate magnetic flux on schedule. Small vortices that twist field lines relentlessly rather than episodically supply a candidate for the missing dissipation. Neither puzzle is solved by this result, but both now have an observed process to be tested against rather than a postulated one.
- inference
- a conclusion reached from evidence rather than direct observation
- aperture
- the diameter of a telescope's light collecting opening
- velocity
- speed in a particular direction
- characterised
- described and understood in terms of its properties
- ubiquity
- the quality of being present everywhere
- energy transport
- the movement of energy from one region of a system to another