Below the proper situations, superconducting magnets enable electrical energy to move primarily undisturbed, producing intense magnetic fields for a wide range of makes use of, together with nuclear fusion experiments. Naturally, a bigger magnetic discipline offers scientists extra room to discover—one thing which will quickly be accessible to physicists in China, due to the creation of a record-setting superconducting magnet.
In a September 28 statement, the Institute of Plasma Physics on the Chinese language Academy of Sciences (CAS) introduced that it had developed an all-superconducting magnet. This magnet efficiently generated a record-breaking magnetic discipline with a energy of 35.1 tesla, which is 700,000 occasions stronger than the Earth’s pure magnetic discipline. The sector held for about half-hour, the assertion mentioned.
The earlier file, which achieved 32.35 tesla, was additionally set by the CAS, however by a unique division, the Institute of Electrical Engineering.
Chinese language scientists introduced on Sunday that they’ve efficiently generated a gradual magnetic discipline of 351,000 gauss—over 700,000 occasions stronger than Earth’s geomagnetic discipline—with a completely superconducting magnet, setting a brand new world file and considerably advancing the… pic.twitter.com/gFR1WQRWIH
— Folks’s Day by day, China (@PDChina) September 29, 2025
“This validated the reliability of the technical answer and offered an necessary platform for conducting varied pattern experiments beneath 35.1 tesla situations in a completely superconducting magnet,” mentioned the CAS.
Cold and hot
Reaching superconducting situations typically requires extraordinarily low temperatures. To be clear, superconducting magnets are already getting used for a wide range of functions, comparable to in MRI scanners or particle accelerators. These makes use of have their very own fabrication problems to cope with, however for fusion functions, the low-temperature requirement makes issues even trickier.
Nuclear fusion—colliding two mild atoms to generate huge quantities of vitality—naturally produces plenty of warmth. That warmth additionally transfers to the superconducting magnets, that are designed to soundly confine the fusion response.
A magnet sandwich
And so, in designing these elements, engineers want to pay attention to the environmental situations the magnet will face. The brand new magnet continues to be removed from being inserted right into a fusion reactor, however the researchers are conscious of the challenges this might pose when making an attempt to ramp up the magnetic discipline’s energy, as they famous in an interview with CGTN.
The magnet’s design hints at a pleasant steadiness. It “adopts high-temperature superconducting insert-coil expertise, coaxially nested with low-temperature superconducting magnets,” Liu Fang, a researcher at CAS, advised CGTN.
The CAS Institute of Plasma Physics spearheads the nation’s participation within the International Thermonuclear Experimental Reactor (ITER), a worldwide collaboration set to construct the world’s largest fusion reactor. The CAS has not specified whether or not the brand new magnet will straight go to ITER, though it famous that it had been tasked with offering many elements of the reactor, together with superconducting expertise.
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