most citedInterpreting AI for Fusion: an application to Plasma Profile Analysis for Tearing Mode Stability

2 citations · 3 across the 5 of their papers we have counts for

collaborators

5 papers

physics.plasm-ph2026

Real-time feedback control of ELM frequency using divertor gas puffing and its effects on tungsten-induced radiation and plasma performance in KSTAR

Minseok Kim, Young-Ho Lee, SangKyeun Kim +10

The edge-localized mode (ELM) frequency () was successfully controlled in real time on KSTAR using a proportional-integral (PI) feedback controller, employing a $…

physics.plasm-ph2026

Robust Control of ECH Deposition Profiles on DIII-D

A. Rothstein, H. J. Farre-Kaga, K. Yasoda +5

Electron Cyclotron Heating (ECH) is a key actuator in DIII-D and future tokamaks that provides auxiliary heating, localized current drive for scenario development and MHD stability…

physics.plasm-ph2026

Compact Experimental Negative TriAngUlarity Reactor (CENTAUR): A design study for a compact, affordable breakeven tokamak

The CENTAUR Collaboration, Samuel W. Freiberger, Evan Bursch +33

This work presents the compact experimental negative triangularity reactor (CENTAUR), a low overnight cost, high-field tokamak, breakeven reactor design, achieving a predicted tota…

physics.plasm-ph2025★ 1 cited

Control of pedestal-top electron density using RMP and gas puff at KSTAR

Minseok Kim, S. K. Kim, A. Rothstein +20

We report the experimental results of controlling the pedestal-top electron density by applying resonant magnetic perturbation with the in-vessel control coils and the main gas puf…

physics.plasm-ph2025★ 2 cited

Interpreting AI for Fusion: an application to Plasma Profile Analysis for Tearing Mode Stability

Hiro J Farre-Kaga, Andrew Rothstein, Rohit Sonker +6

AI models have demonstrated strong predictive capabilities for various tokamak instabilities--including tearing modes (TM), ELMs, and disruptive event--but their opaque nature rais…