中文

Increasing the density limit with ECRH-assisted Ohmic start-up on EAST

等离子体物理 2025-05-06 v1

摘要

High plasma density operation is crucial for a tokamak to achieve energy breakeven and a burning plasma. However, there is often an empirical upper limit of electron density in tokamak operation, namely the Greenwald density limit nGn_G, above which tokamaks generally disrupt. Achieving high-density operations above the density limit has been a long-standing challenge in magnetic confinement fusion research. Here, we report experimental results on EAST tokamak achieving the line-averaged electron density in the range of 1.3 nGn_G to 1.65 nGn_G,while the usual range in EAST is (0.8-1.0)nGn_G. This is performed with ECRH-assisted Ohmic start-up and a sufficiently high initial neutral density. This is motivated by and consistent with predictions of a recent plasma-wall self-organization (PWSO) theory, that increasing ECRH power or pre-filled gas pressure leads to lower plasma temperatures around divertor target and higher density limits. In addition, the experiments are shown to operate in the density-free regime predicted by the PWSO model. These results suggest a promising scheme for substantially increasing the density limit in tokamaks, a critical advancement toward achieving the burning plasma.

引用

@article{arxiv.2505.02710,
  title  = {Increasing the density limit with ECRH-assisted Ohmic start-up on EAST},
  author = {Jiaxing Liu and Ping Zhu and Dominique Franck Escande and Wenbin Liu and Shiwei Xue and Xin Lin and Panjun Tang and Liang Wang and Ning Yan and Jinju Yang and Yanmin Duan and Kai Jia and Zhenwei Wu and Yunxin Cheng and Ling Zhang and Jinping Qian and Rui Ding and Ruijie Zhou and the EAST team},
  journal= {arXiv preprint arXiv:2505.02710},
  year   = {2025}
}

备注

20 pages, 5 figures