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- W2022343801 abstract "Metallic Faraday shields commonly in use in many ion cyclotron resonance heating experiments have been shown to have two adverse effects on the antenna-plasma coupling properties: magnetic shielding of the antenna current and possibly significant ohmic losses. The purpose of this paper is to investigate these two effects for shields of finite thickness using a detailed analysis of the fringing fields induced by the Faraday shields. Naturally, the extension to finite thickness introduces the question of shield cross-section shape. Considerable attention is given to this point through two case studies of a square-edged and a rounded-edge shield. It is shown that magnetic shielding properties of a given cross section can be characterized by a single parameter, dependent only on cross-section shape and dimensions. Ohmic losses are seen to be 30%–40% less for a cross section with rounded edges than for the square-edged cross section. Also of interest is a minimum in the ohmic loss versus thickness relation for the round cross section, indicating the existence of an optimum ohmic loss design with respect to shield thickness." @default.
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- W2022343801 date "1986-06-15" @default.
- W2022343801 modified "2023-09-26" @default.
- W2022343801 title "Calculation of magnetic shielding and ohmic losses from finite thickness Faraday shields used in rf heating of plasmas" @default.
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- W2022343801 doi "https://doi.org/10.1063/1.336702" @default.
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