collaborators

6 papers

physics.plasm-ph2026

Drift-reduced fluid modeling of rapidly rotating plasmas

Edward A. Tocco, Benjamin D. Dudson, Ian G. Abel +1

In this paper, we investigate the effects of rapid rotation (Mach number M ~ 1) on plasma fluid stability, focusing specifically on Kelvin-Helmholtz (KH) and interchange instabilit…

physics.plasm-ph2026

Neural operator transformers capture bifurcating drift wave turbulence in fusion plasma simulations

Johannes J. van de Wetering, Ben Zhu

Self-consistent modeling of turbulence-driven transport is critical for optimizing confinement in magnetically confined fusion plasmas, such as in tokamaks and stellarators. In par…

physics.plasm-ph2026

Triggers for plasma detachment bifurcation in the edge divertor region of tokamaks

Menglong Zhao, Thomas Rognlien, Ben Zhu +3

We report the discovery of the trigger for detachment bifurcation phenomenon in tokamak divertors, revealed through steady-state and time-dependent UEDGE simulations: The observed…

physics.plasm-ph2025

Physics insights from a large-scale 2D UEDGE simulation database for detachment control in KSTAR

Menglong Zhao, Xueqiao Xu, Ben Zhu +8

A large-scale database of two-dimensional UEDGE simulations has been developed to study detachment physics in KSTAR and to support surrogate models for control applications. Nearly…

physics.plasm-ph2025

Latent Space Mapping: Revolutionizing Predictive Models for Divertor Plasma Detachment Control

Ben Zhu, Menglong Zhao, Xue-Qiao Xu +4

The inherent complexity of boundary plasma, characterized by multi-scale and multi-physics challenges, has historically restricted high-fidelity simulations to scientific research…

physics.plasm-ph2025

Detachment control in KSTAR with Tungsten divertor

Anchal Gupta, David Eldon, Eunnam Bang +7

KSTAR has recently undergone an upgrade to use a new Tungsten divertor to run experiments in ITER-relevant scenarios. Even with a high melting point of Tungsten, it is important to…