English

Initial observations in X-point target divertor discharges on MAST-U

Plasma Physics 2026-01-30 v1

Abstract

The first high-power (> 3 MW) H-mode experiments using a double-null X-point-target (XPT) divertor configuration have been performed on MAST-U. The XPT geometry is obtained by combining a large strike point radius, similar to the Super-X divertor (SXD), with an additional X-point near the separatrix in the baffled outer divertor chambers and leads to additional exhaust benefits over the SXD. The broader electron density profile near the secondary X-point leads to additional plasma-neutral interactions, evidenced by a broader hydrogenic emission profile, and resulting in larger power and ion sinks. The increase in plasma-neutral interactions also leads to lower target electron temperatures and heat fluxes. These benefits appear to extend to transients, and preliminary evidence of improved ELM buffering in the XPT is presented. These results showcase how multiple alternative divertor configuration strategies can be combined to improve momentum, power, and particle losses, which may be required for the challenging exhaust conditions of future reactors.

Keywords

Cite

@article{arxiv.2601.21840,
  title  = {Initial observations in X-point target divertor discharges on MAST-U},
  author = {N. Lonigro and K. Verhaegh and J. Harrison and B. Lipschultz and C. Bowman and F. Federici and J. Flanagan and D. Greenhouse and D. Moulton and P. Ryan and R. Scannell and S. Silburn and T. Wijkamp and D. Brida and C. Theiler and the EUROfusion Tokamak Exploitation Team and the MAST Upgrade Team},
  journal= {arXiv preprint arXiv:2601.21840},
  year   = {2026}
}
R2 v1 2026-07-01T09:25:53.704Z