2003
DOI: 10.1016/s0022-3115(02)01392-2
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Asymmetric divertor plasma distribution observed in Heliotron J ECH discharges

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Cited by 15 publications
(16 citation statements)
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“…To study low frequency (1-200 kHz) and small-scale (k ? $ 1-2 cm À1 ) fluctuations of density (ion saturation current, I s ) and potential (floating potential, V f ) near the last closed flux surface (LCFS), we used three Langmuir probes, which were a part of a poloidal probe array with 17 pins (#9-#11 probes of the array) [9]. The probe pins were aligned nearly parallel to the shape of the calculated LCFS in one poloidal crosssection of the torus.…”
Section: Methodsmentioning
confidence: 99%
“…To study low frequency (1-200 kHz) and small-scale (k ? $ 1-2 cm À1 ) fluctuations of density (ion saturation current, I s ) and potential (floating potential, V f ) near the last closed flux surface (LCFS), we used three Langmuir probes, which were a part of a poloidal probe array with 17 pins (#9-#11 probes of the array) [9]. The probe pins were aligned nearly parallel to the shape of the calculated LCFS in one poloidal crosssection of the torus.…”
Section: Methodsmentioning
confidence: 99%
“…Heliotron J is a medium sized heliotron device with an L = 1/M = 4 helical axis which can form various magnetic configurations [5][6][7]. The schematic of the experimental setup is shown in Fig.…”
Section: Methodsmentioning
confidence: 99%
“…In these figures, the filamentary structure moved downward. The radial electric field E r of the peripheral region in STD Heliotron J plasma measured by Langmuir probe was negative [9] and the E r · B direction is downward in the image. Therefore, it is expected that the motion of the filamentary structure is affected by the E r · B drift in edge plasma [10].…”
Section: Features Of the Filamentary Structurementioning
confidence: 91%