Abstract:Arcades of flare loops rise, slowing down in the wake of eruptive prominences. They lag significantly from the top of prominences and do not reach too great heights in the corona. It is widely accepted that their evolution is governed by the limited reconnection rate in the current sheet developed below the eruptive prominence. We suggest that the shape of eruptive prominences may be the determining factor in the ascension of the arcade. Arcade deceleration and their limited heights are analysed in the frame o… Show more
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