The Institute of Plasma Physics of the Chinese Academy of Sciences announced today that the National Large Scientific Device - the world's first full superconducting Tokamak (EAST) Eastern Hypercyclic Retransmission Express, achieved a stable long-pulse high-constrained plasma of 101.2 seconds Body operation has created a new world record.

This signifies that EAST has become the first Tokamak nuclear fusion experiment device in the world to achieve steady-state high-constrained mode operation lasting hundreds of seconds.

This milestone breakthrough shows that the research on magnetic confinement fusion in China will continue to lead the international frontier in the physical and engineering aspects of steady-state operation, for the International Thermonuclear Experimental Reactor (ITER) and the Future China Fusion Engineering Experimental Reactor (CFETR). The construction and operation are of great scientific significance, and at the same time it has laid an important technical foundation for the development and utilization of nuclear fusion clean energy by humans.

EAST is 11 meters high, 8 meters in diameter, and weighs 400 tons. It is the fourth-generation nuclear fusion experimental device in China. Its scientific goal is to make nuclear and fusion of large quantities of helium and neon in seawater under high temperature conditions like the sun. Humans provide a steady stream of clean energy, so it is also called "artificial sun."

After years of research, the Chinese scientific research team successfully solved a number of international common problems. For the first time in the world, it achieved a high constrained operation of 10 million seconds of sustained discharge of 50 million degrees of plasma, achieving a leap from 60 seconds to hundreds of seconds.

The ITER project is currently the largest international science and technology cooperation project in the world and is an important way for humankind to explore the future of high-efficiency and clean energy. The realization of steady-state long-pulse highly confined plasma operation is a key scientific problem for fusion reactors in the future.

EAST has advanced technologies similar to ITER. In the next five years, EAST will be the only experimental platform in the world capable of performing long-pulse high-constrained fusion plasma physics and engineering technology that exceeds the hundredth-second time scale. It is EAST’s Important mission.

The breakthrough of this experiment further enhances EAST's important position in the research of international magnetic confinement fusion experiments. Its scientific research results will provide important scientific and experimental support for the future ITER long-pulse high constrained operation, and will make China's next-generation fusion device— — The foundation for the pre-research, construction, operation and personnel training of China Fusion Engineering Experimental Reactor (CFETR).

The basic parameters of the world's longest 101.2 seconds high confinement discharge plasma realized by the Eastern Super Ring (Ip=0.4MA, Bt=2.5T, PRF=3.0MW, ne=3.0x1019/m3, Te=4.0KeV, H98y2=1.1, USN)

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