The astronomers studied Abell 2255. That is a cluster of thousands of galaxies about a billion light years from Earth in the direction of the constellation of Draco. The new images are 25 times sharper and have 60 times less noise than images taken with a precursor of LOFAR. The team had to develop new techniques to process the large volume of data.

Clusters of galaxies are the most densely “populated” regions of the universe. They consist of hundreds to thousands of galaxies. Between the galaxies, there is rarefied gas of high-energy particles and magnetic fields. Little is known about the origin of this gas and how the particles and magnetic fields influence each other.

“Based on the new images and our calculations, we think that the radio emission from Abell 2255 has been generated during the formation of the cluster,” said research leader Andrea Botteon (Leiden University, the Netherlands and Università di Bologna / INAF, Italy). He adds that it is the first time that astronomers studied these processes very far away from the cluster center. “In our theory, we assume that the particles are accelerated by the enormous turbulence and shocks produced during the formation of the cluster. In turn, these motions can also amplify the magnetic fields.”

In the future, the researchers want to target the LOFAR telescopes and yet-to-be-built telescopes such as the Square Kilometer Array for longer periods of time at other clusters of galaxies. In addition, they intend to observe Abell 2255 in more detail. By doing so, they hope to learn more about the so-called cosmic web that interconnects clusters of galaxies.

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Publication

‘Magnetic fields and relativistic electrons fill entire galaxy cluster’, Andrea Botteon et al., Science Advances, 2 november 2022.

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