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The first experiments aimed at obtaining the 2D distribution of plasma potential were performed in TJ-II using Heavy Ion Beam Probe (HIBP) with the variation of two parameters: plasma entrance angle and the energy of the Cs+ probing beam in the range 128-148 keV <ref>R. Sharma et al., Physics of Plasmas 27, 062502 (2020)</ref>. | The first experiments aimed at obtaining the 2D distribution of plasma potential were performed in TJ-II using Heavy Ion Beam Probe (HIBP) with the variation of two parameters: plasma entrance angle and the energy of the Cs+ probing beam in the range 128-148 keV <ref>R. Sharma et al., Physics of Plasmas 27, 062502 (2020)</ref>. | ||
During | During 2021 HIBP was extended to 176 keV with a beam current up to 300 μA <ref>A. Melnikov et al., PPCF (2021) submitted</ref> | ||
The goal of this proposal is to expand the HIBP energy range [80 - 200 keV] to explore the whole TJ-II poloidal cross-section. | The goal of this proposal is to expand the HIBP energy range [80 - 200 keV] to explore the whole TJ-II poloidal cross-section. | ||
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Required resources: | Required resources: | ||
• Number of days of operation: | • Number of days of operation: 2 | ||
• Essential diagnostic systems: Dual HIBP [May / June] | |||
• Essential diagnostic systems: Dual HIBP [May / June] | |||
• Type of plasmas (heating configuration): ECRH & NBI | • Type of plasmas (heating configuration): ECRH & NBI | ||
• Wall conditioning: Sufficient density control for good reproducibility in NBI plasmas. | • Wall conditioning: Sufficient density control for good reproducibility in NBI plasmas. | ||
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[[Category:TJ-II internal documents]] | [[Category:TJ-II internal documents]] | ||
[[Category:TJ-II experimental proposals 2021]] | [[Category:TJ-II experimental proposals Spring 2021]] |
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