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Quasiperiodic acceleration of electrons by a plasmoid-driven shock in the solar atmosphere

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arxiv 1406.0743 v1 pith:NTZMFQWF submitted 2014-06-03 astro-ph.SR

classification astro-ph.SR
keywords accelerationshockelectronssolarcmescoronalenergiesparticle
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abstract

Cosmic rays and solar energetic particles may be accelerated to relativistic energies by shock waves in astrophysical plasmas. On the Sun, shocks and particle acceleration are often associated with the eruption of magnetized plasmoids, called coronal mass ejections (CMEs). However, the physical relationship between CMEs and shock particle acceleration is not well understood. Here, we use extreme ultraviolet, radio and white-light imaging of a solar eruptive event on 22 September 2011 to show that a CME-induced shock (Alfv\'en Mach number 2.4$^{+0.7}_{-0.8}$) was coincident with a coronal wave and an intense metric radio burst generated by intermittent acceleration of electrons to kinetic energies of 2-46 keV (0.1-0.4 c). Our observations show that plasmoid-driven quasi-perpendicular shocks are capable of producing quasi-periodic acceleration of electrons, an effect consistent with a turbulent or rippled plasma shock surface.

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  1. Type II radio bursts and space weather phenomena: A statistical study

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    During solar cycle 24, 518 type II radio bursts split into metric-only, metric+DH, and DH-only show 71-77% association with flares and CMEs but much weaker association with interplanetary shocks, particles, and geomag...

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