The role of error fields in stellarators is explored in this work through simulations of, and experiments performed on, the Wendelstein 7-X (W7-X) stellarator. Previous experimental results, based on limiter plasmas in W7-X, suggest that error fields are small in the experiment based on limiter plasmas. In this work, we document results from the first divertor campaign on W7-X with a focus on error fields resonant with the edge island divertor structure. Measurements obtained using divertor thermocouples corroborate earlier limiter results that the error fields are small and correctable, requiring only 5% of the total rated current of the trim coil system. The effect of these error fields on magnetic geometry and topology are investigated u...
Tokamak plasmas can be sensitive to external non-axisymmetric magnetic perturbations that are severa...
In the scrape-off layer and outermost edge of the Wendelstein 7-AS (W7-AS) stellarator, fluctuations...
The Wendelstein 7-X (W7-X) optimized stellarator fusion experiment, which went into operation in 201...
The role of error fields in stellarators is explored in this work through simulations of, and experi...
No fusion device can be created without some uncertainty; there is always a slight deviation from th...
In the first campaign Wendelstein 7-X was operated with five poloidal graphite limiters installed st...
Fusion energy research has in the past 40 years focused primarily on the tokamak concept, but recent...
Classical particle drifts are known to have substantial impacts on fluxes of particles and heat thro...
Error fields in ITER are considered one of the major sources of possible loss of performance in the ...
The stellarator Wendelstein 7-X is under construction in Greifswald. For energy and particle exhaust...
The two leading concepts for confining high-temperature fusion plasmas are the tokamak and the stell...
The formation of the radial electric field, E-r in the scrape-off layer (SOL) has been experimentall...
The control of rotational transform in Wendelstein 7-X (W7-X) is key to both the island divertor ope...
Tokamak plasmas can be sensitive to external non-axisymmetric magnetic perturbations that are severa...
In the scrape-off layer and outermost edge of the Wendelstein 7-AS (W7-AS) stellarator, fluctuations...
The Wendelstein 7-X (W7-X) optimized stellarator fusion experiment, which went into operation in 201...
The role of error fields in stellarators is explored in this work through simulations of, and experi...
No fusion device can be created without some uncertainty; there is always a slight deviation from th...
In the first campaign Wendelstein 7-X was operated with five poloidal graphite limiters installed st...
Fusion energy research has in the past 40 years focused primarily on the tokamak concept, but recent...
Classical particle drifts are known to have substantial impacts on fluxes of particles and heat thro...
Error fields in ITER are considered one of the major sources of possible loss of performance in the ...
The stellarator Wendelstein 7-X is under construction in Greifswald. For energy and particle exhaust...
The two leading concepts for confining high-temperature fusion plasmas are the tokamak and the stell...
The formation of the radial electric field, E-r in the scrape-off layer (SOL) has been experimentall...
The control of rotational transform in Wendelstein 7-X (W7-X) is key to both the island divertor ope...
Tokamak plasmas can be sensitive to external non-axisymmetric magnetic perturbations that are severa...
In the scrape-off layer and outermost edge of the Wendelstein 7-AS (W7-AS) stellarator, fluctuations...
The Wendelstein 7-X (W7-X) optimized stellarator fusion experiment, which went into operation in 201...