Realization of thousand-second improved confinement plasma with Super I-mode in Tokamak EAST
Author(s)
Song, Yuntao; Zou, Xiaolan; Gong, Xianzu; Becoulet, Alain; Buttery, Richard; Bonoli, Paul T.; Hoang, Tuong; Zhong, Xiaoming; Liu, Adi; Li, Erzhong; Zang, Qing; Qian, Jinping; Liu, Haiqing; Wang, Liang; Xu, Liqing; Zhang, Ling; Li, Guoqiang; Garofalo, Andrea; Osborne, Tom; Leonard, Tony; Baek, Seung Gyou; Wallace, Greg M.; Wang, Shouxin; Chu, Yuqi; Zhang, Tao; Duan, Yanmin; Lian, Hui; Zhang, Xuexi; Jin, Yifei; Ding, Rui; Lyu, Bo; Zhang, Bin; Wang, Xiaojie; Ding, B.; Li, Miaohui; Zhang, Xinjun; Qing, Chengming; Xi, Weibin; Zhang, Jian; Huang, Liansheng; Yao, Damao; Hu, Yanlan; Zuo, Guizhong; Yuan, Qinping; Zhou, Zhiwei; Wang, Mao; Xu, Handong; Xie, Yahong; Wang, Zhengchu; Xu, Gupcheng; Hu, Jiansheng; Lu, Kun; Liu, Fukun; Wan, Baonian; Li, Jiangang; EAST Team; ... Show more Show less
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Show full item recordAbstract
Mastering nuclear fusion, which is an abundant, safe, and environmentally competitive energy, is a great challenge for humanity. Tokamak represents one of the most promising paths toward controlled fusion. Obtaining a high-performance, steady-state, and long-pulse plasma regime remains a critical issue. Recently, a big breakthrough in steady-state operation was made on the Experimental Advanced Superconducting Tokamak (EAST). A steady-state plasma with a world-record pulse length of 1056 s was obtained, where the density and the divertor peak heat flux were well controlled, with no core impurity accumulation, and a new high-confinement and self-organizing regime (Super I-mode = I-mode + e-ITB) was discovered and demonstrated. These achievements contribute to the integration of fusion plasma technology and physics, which is essential to operate nextstep devices.
Description
Submitted for publication in Science Advances
Date issued
2022-05Department
Massachusetts Institute of Technology. Plasma Science and Fusion CenterJournal
Science Advances
Publisher
Science
Other identifiers
23ja077
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