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- W758077072 abstract "Several tokamak regimes are characterized by the appearance of runaway electrons which can potentially damage the machine. Therefore, diagnostics need to be developed in order to study the emission of these runaways and other supra-thermal electrons. Electrons in a tokamak, which gain energy higher than some critical value, can be continuously accelerated by the toroidal electric field, and can run away. Studies of the runaway electrons make it possible to collect important information about plasma behavior. In large tokamaks the runaway electrons can gain enormous energy to cause serious damages of the first wall. Runaway electrons generated during plasma disruptions have been investigated intensively in several machines, e.g. [1–8, 10, 13], and it was found that their number and maximum energy depend on plasma parameters and vary during the discharge. More studies in the field of runaway electron diagnostics were cited in previous papers [2, 4, 13] and especially in the paper [3], where the advantages of the Cherenkov detectors were also discussed. In the ISTTOK tokamak, plasma is produced at high toroidal electric fields, and the runaway electrons can be recorded [2, 4, 10]. In the past the runaway generation regimes in the ISTTOK tokamak have been characterized in the frame of a conventional theory, using the interpretative modeling of the plasma power-energy balance and calculations of the runaway electron current [9]. The application of Cherenkov-type detectors for studies of fast electron beams within tokamaks was Estimation of ISTTOK runaway-electrons energies by means of a Cherenkov-type probe with modified AlN radiators Lech Jakubowski, Vladislav V. Plyusnin, Marek J. Sadowski, Jaroslaw Zebrowski, Karol Malinowski, Marek Rabinski, Horatio Fernandes, Carlos Silva, Paulo Duarte, Marcin Jakubowski" @default.
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- W758077072 date "2012-01-01" @default.
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- W758077072 title "Estimation of ISTTOK runaway - electrons energies by means of a Cherenkov - type probe with modified AlN radiators" @default.
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