Area of research
Nuclear and High Energy Physics · Materials Chemistry
Research interest
Research interests include Stellarator, Wendelstein 7-X, Divertor, Plasma, Physics, and Atomic physics.
First experimental confirmation of island SOL geometry effects in a high radiation regime on W7-X
Multi-delay coherence imaging spectroscopy optimized for ion temperature measurements in the divertor plasma of the Wendelstein 7-X stellarator
Effects of drifts on scrape-off layer transport in W7-X
Bayesian modeling of collisional-radiative models applicable to thermal helium beam plasma diagnostics
2D measurements of parallel counter-streaming flows in the W7-X scrape-off layer for attached and detached plasmas
2D coherence imaging measurements of C<sup>2+ </sup> ion temperatures in the divertor of Wendelstein 7-X
Coherence imaging spectroscopy at Wendelstein 7-X for impurity flow measurements
Publisher’s Note: “Coherence imaging spectroscopy at Wendelstein 7-X for impurity flow measurements” [Rev. Sci. Instrum. 91, 013501 (2020)]
Performance of Wendelstein 7-X stellarator plasmas during the first divertor operation phase
First divertor physics studies in Wendelstein 7-X
Investigation of 3D effects on heat fluxes in performance-optimized island divertor configurations at Wendelstein 7-X
Direct measurements of counter-streaming flows in a low-shear stellarator magnetic island topology
A new calibration implementation for Doppler Coherence Imaging Spectroscopy
Upgrades of edge, divertor and scrape-off layer diagnostics of W7‐X for OP1.2
Major results from the first plasma campaign of the Wendelstein 7-X stellarator