Observational evidence for return currents in solar flare loops
Marina Battaglia, Arnold O. Benz

TL;DR
This study provides observational evidence for return currents in solar flare loops by analyzing RHESSI satellite data, revealing that electric fields influence particle transport and challenge standard models.
Contribution
It introduces new observational evidence for electric fields caused by return currents in solar flare loops, refining understanding of particle transport during flares.
Findings
Propagation effects include non-collisional energy loss.
Electric fields in flare loops influence particle transport.
Standard models cannot explain all observed events.
Abstract
Context: The common flare scenario comprises an acceleration site in the corona and particle transport to the chromosphere. Using satellites available to date it has become possible to distinguish between the two processes of acceleration and transport, and study the particle propagation in flare loops in detail, as well as complete comparisons with theoretical predictions. Aims: We complete a quantitative comparison between flare hard X-ray spectra observed by RHESSI and theoretical predictions. This enables acceleration to be distinguished from transport and the nature of transport effects to be explored. Methods: Data acquired by the RHESSI satellite were analyzed using full sun spectroscopy as well as imaging spectroscopy methods. Coronal source and footpoint spectra of well observed limb events were analyzed and quantitatively compared to theoretical predictions. New concepts…
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