Line emissions from both silicon (Si) and boron (B) impurity ions introduced by a single tracer-encapsulated solid pellet (TESPEL) containing silicon hexaboride (SiB6) powders were successfully observed using the extreme ultraviolet (EUV) spectrometer and charge-exchange spectroscopy (CXS) technique in the Large Helical Device. The CXS diagnostic shows clearly that a hollow radial profile of fully ionized B impurities was created immediately after the TESPEL injection, and such a hollow profile was relaxed with time. At the same time, Li-like emissions from the highly ionized Si impurities were also observed with the EUV spectrometer, SOXMOS. Therefore, the decay times of these impurities could be estimated under the same plasma conditions....
A variety of density profiles observed in the Large Helical Device (LHD) have suggested an interesti...
An essential element for stationary stellarator operation is the understanding of the impurity trans...
International audienceThe boron precipitation phenomenon in highly supersaturated boron-implanted si...
An impurity powder dropper was installed in the 21st campaign of the Large Helical Device experiment...
Impurity behaviors in LHD are studied by a Tracer-encapsulated Solid Pellet (TESPEL) injection. By c...
The effect of plasma parameters on impurity transport has been systematically investigated by laser ...
\u3cp\u3eRadial profiles of bulk ion and impurity ions density are simultaneously measured and quant...
International audienceUsing a recently installed impurity powder dropper (IPD), boron powder (<150 μ...
A space-resolved spectroscopy using a 3m normal incidence vacuum ultraviolet (VUV) spectrometer was ...
The Large Helical Device (LHD) and Wendelstein 7-X (W7-X, under construction) are experiments specia...
Toward real-time wall conditioning, impurity powder dropping experiments with boron powder were perf...
A Tracer-Encapsulated Solid Pellet (TESPEL) was developed for promoting an impurity transport study ...
A variety of density profiles observed in the Large Helical Device (LHD) have suggested an interesti...
An essential element for stationary stellarator operation is the understanding of the impurity trans...
International audienceThe boron precipitation phenomenon in highly supersaturated boron-implanted si...
An impurity powder dropper was installed in the 21st campaign of the Large Helical Device experiment...
Impurity behaviors in LHD are studied by a Tracer-encapsulated Solid Pellet (TESPEL) injection. By c...
The effect of plasma parameters on impurity transport has been systematically investigated by laser ...
\u3cp\u3eRadial profiles of bulk ion and impurity ions density are simultaneously measured and quant...
International audienceUsing a recently installed impurity powder dropper (IPD), boron powder (<150 μ...
A space-resolved spectroscopy using a 3m normal incidence vacuum ultraviolet (VUV) spectrometer was ...
The Large Helical Device (LHD) and Wendelstein 7-X (W7-X, under construction) are experiments specia...
Toward real-time wall conditioning, impurity powder dropping experiments with boron powder were perf...
A Tracer-Encapsulated Solid Pellet (TESPEL) was developed for promoting an impurity transport study ...
A variety of density profiles observed in the Large Helical Device (LHD) have suggested an interesti...
An essential element for stationary stellarator operation is the understanding of the impurity trans...
International audienceThe boron precipitation phenomenon in highly supersaturated boron-implanted si...