Observations show a flare-driven coronal wave raised the temperature and density of an adjacent coronal hole during passage, then left it 14% less dense, with an estimated energy input of 2.2e8 erg/cm2.
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Responses of a Coronal Hole to a Fast Flare-Driven Coronal Wave
Observations show a flare-driven coronal wave raised the temperature and density of an adjacent coronal hole during passage, then left it 14% less dense, with an estimated energy input of 2.2e8 erg/cm2.