Temporal evolution of confined fast-ion velocity distributions measured by collective Thomson scattering in TEXTOR
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Abstract |
Fast ions created in the fusion processes will provide up to 70% of the heating in ITER. To optimize heating and current drive in magnetically confined plasmas insight into fast-ion dynamics is important. First measurements of such dynamics by collective Thomson scattering (CTS) were recently reported [Bindslev , Phys. Rev. Lett. 97, 205005 2006]. Here we extend the discussion of these results which were obtained at the TEXTOR tokamak. The fast ions are generated by neutral-beam injection and ion-cyclotron resonance heating. The CTS system uses 100-150 kW of 110-GHz gyrotron probing radiation which scatters off the collective plasma fluctuations driven by the fast-ion motion. The technique measures the projected one-dimensional velocity distribution of confined fast ions in the scattering volume where the probe and receiver beams cross. By shifting the scattering volume a number of scattering locations and different resolved velocity components can be measured. The temporal resolution is 4 ms while the spatial resolution is similar to 10 cm depending on the scattering geometry. Fast-ion velocity distributions in a variety of scenarios are measured, including the evolution of the velocity distribution after turnoff of the ion heating. These results are in close agreement with numerical simulations. |
Year of Publication |
2008
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Journal |
Physical Review E
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Volume |
77
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Number |
1
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Number of Pages |
11
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Date Published |
Jan
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Type of Article |
Article
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ISBN Number |
1539-3755
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Accession Number |
ISI:000252861600043
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URL | |
PId |
4dd2d63d6926dd2deb884c7009a019c9
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Alternate Journal |
Phys. Rev. E
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Journal Article
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