English

Robust avoidance of edge-localized modes alongside gradient formation in the negative triangularity tokamak edge

Plasma Physics 2024-01-15 v1

Abstract

In a series of high performance diverted discharges on DIII-D, we demonstrate that strong negative triangularity (NT) shaping robustly suppresses all edge-localized mode (ELM) activity over a wide range of plasma conditions: n=0.11.5×1020\langle n\rangle=0.1-1.5\times10^{20}m3^{-3}, Paux=015P_\mathrm{aux}=0-15MW and Bt=12.2|B_\mathrm{t}|=1-2.2T, corresponding to Ploss/PLH088P_\mathrm{loss}/P_\mathrm{LH08}\sim8. The full dataset is consistent with the theoretical prediction that magnetic shear in the NT edge inhibits access to ELMing H-mode regimes; all experimental pressure profiles are found to be at or below the infinite-nn ballooning stability limit. Importantly, we also report enhanced edge pressure gradients at strong NT that are significantly steeper than in traditional ELM-free L-mode plasmas and provide significant promise for NT reactor integration.

Keywords

Cite

@article{arxiv.2305.13458,
  title  = {Robust avoidance of edge-localized modes alongside gradient formation in the negative triangularity tokamak edge},
  author = {A. O. Nelson and L. Schmitz and C. Paz-Soldan and K. E. Thome and T. B. Cote and N. Leuthold and F. Scotti and M. E. Austin and A. Hyatt and T. Osborne},
  journal= {arXiv preprint arXiv:2305.13458},
  year   = {2024}
}

Comments

5 pages, 5 figures

R2 v1 2026-06-28T10:42:04.841Z