Area of research
Nuclear and High Energy Physics · Materials Chemistry
Research interest
Research interests include Magnetic confinement fusion research, Fusion materials and technologies, Plasma Diagnostics and Applications, and Particle accelerators and beam dynamics.
Correction and verification of x-ray imaging crystal spectrometer analysis on Wendelstein 7-X through x-ray ray tracing
Validation of the BEAMS3D neutral beam deposition model on Wendelstein 7-X
Investigation of the neoclassical ambipolar electric field in ion-root plasmas on W7-X
Observation of anomalous impurity transport during low-density experiments in W7-X with laser blow-off injections of iron
Sawtooth oscillation behavior with varying amounts of applied stellarator rotational transform
Prospects of X-ray imaging spectrometers for impurity transport: Recent results from the stellarator Wendelstein 7-X (invited)
<i>In situ</i> wavelength calibration system for the X-ray Imaging Crystal Spectrometer (XICS) on W7-X
Impurity transport studies at Wendelstein 7-X by means of x-ray imaging spectrometer measurements
Determination of current and rotational transform profiles in a current-carrying stellarator using soft x-ray emissivity measurements
In-situ wavelength calibration system for the X-ray Imaging Crystal Spectrometer (XICS) on W7-X
MPG.PuRe (Max Planck Society) 2018cited by 0position: middle
Performance and properties of the first plasmas of Wendelstein 7-X
Low edge safety factor operation and passive disruption avoidance in current carrying plasmas by the addition of stellarator rotational transform
Non-axisymmetric equilibrium reconstruction of a current-carrying stellarator using external magnetic and soft x-ray inversion radius measurements
Suppression of vertical instability in elongated current-carrying plasmas by applying stellarator rotational transform
Thomson scattering diagnostic system design for the Compact Toroidal Hybrid experiment