The Sun is a star: see how it burns (science news).
The first images from Solar Orbiter, a new Sun-observing mission by ESA and NASA, have revealed omnipresent miniature solar flares, dubbed โcampfiresโ, near the surface of our closest star.
According to the scientists behind the mission, seeing phenomena that were not observable in detail before hints at the enormous potential of Solar Orbiter, which has only just finished its early phase of technical verification known as commissioning.
โThese are only the first images and we can already see interesting new phenomena,โ says Daniel Mรผller, ESAโs Solar Orbiter Project Scientist. โWe didnโt really expect such great results right from the start. We can also see how our ten scientific instruments complement each other, providing a holistic picture of the Sun and the surrounding environment.โ
Solar Orbiter, launched on 10 February 2020, carries six remote-sensing instruments, or telescopes, that image the Sun and its surroundings, and four in situ instruments that monitor the environment around the spacecraft. By comparing the data from both sets of instruments, scientists will get insights into the generation of the solar wind, the stream of charged particles from the Sun that influences the entire Solar System.
The unique aspect of the Solar Orbiter mission is that no other spacecraft has been able to take images of the Sunโs surface from a closer distance. The campfires shown in the first image set were captured by the Extreme Ultraviolet Imager (EUI) from Solar Orbiterโs first perihelion, the point in its elliptical orbit closest to the Sun. At that time, the spacecraft was only 77 million km away from the Sun, about half the distance between Earth and the star.
โThe campfires are little relatives of the solar flares that we can observe from Earth, million or billion times smaller,โ says David Berghmans of the Royal Observatory of Belgium (ROB), Principal Investigator of the EUI instrument, which takes high-resolution images of the lower layers of the Sunโs atmosphere, known as the solar corona. โThe Sun might look quiet at the first glance, but when we look in detail, we can see those miniature flares everywhere we look.โ
The scientists do not know yet whether the campfires are just tiny versions of big flares, or whether they are driven by different mechanisms. There are, however, already theories that these miniature flares could be contributing to one of the most mysterious phenomena on the Sun, the coronal heating.
โThese campfires are totally insignificant each by themselves, but summing up their effect all over the Sun, they might be the dominant contribution to the heating of the solar corona,โ says Frรฉdรฉric Auchรจre, of the Institut d’Astrophysique Spatiale (IAS), France, Co-Principal Investigator of EUI.
The solar corona is the outermost layer of the Sunโs atmosphere that extends millions of kilometres into outer space. Its temperature is more than a million degrees Celsius, which is orders of magnitude hotter than the surface of the Sun, a โcoolโ 5500 ยฐC. After many decades of studies, the physical mechanisms that heat the corona are still not fully understood, but identifying them is considered the โholy grailโ of solar physics.
โItโs obviously way too early to tell but we hope that by connecting these observations with measurements from our other instruments that โfeelโ the solar wind as it passes the spacecraft, we will eventually be able to answer some of these mysteries,โ says Yannis Zouganelis, Solar Orbiter Deputy Project Scientist at ESA.

