The effects of resistivity on oscillatory reconnection and consequences for solar flare Quasi Periodic Pulsations

Fuente: arXiv
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Main Authors: Schiavo, Luiz A. C. A., Stewart, James, Browning, Philippa K.
Format: Preprint
Published: 2024
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author Schiavo, Luiz A. C. A.
Stewart, James
Browning, Philippa K.
author_facet Schiavo, Luiz A. C. A.
Stewart, James
Browning, Philippa K.
contents Quasi-periodic pulsations (QPPs) are often observed in flare emissions. While these may reveal much about the time-dependent reconnection involved in flare energy release, the underlying mechanisms are still poorly understood. In this paper, we use 2D magnetohydrodynamic simulations to investigate the magnetic reconnection in two merging flux ropes, focusing on the effects of the resistivity on the time variation of the reconnection. We consider both uniform resistivity and current-dependent anomalous resistivity profiles. Our findings reveal that resistivity plays a critical role in controlling the reconnection dynamics, including reconnection rate oscillations and the rate of decay of the reconnection rate. Resistivity also influences the oscillations in emitted gyrosynchrotron radiation. However, in contrast to this strong influence of resistivity on reconnection rates, we observed a different behaviour for the emitted waves, whose frequencies are almost independent of resistivity variations.
format Preprint
id arxiv_https___arxiv_org_abs_2410_14563
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The effects of resistivity on oscillatory reconnection and consequences for solar flare Quasi Periodic Pulsations
Schiavo, Luiz A. C. A.
Stewart, James
Browning, Philippa K.
Solar and Stellar Astrophysics
Plasma Physics
Space Physics
Quasi-periodic pulsations (QPPs) are often observed in flare emissions. While these may reveal much about the time-dependent reconnection involved in flare energy release, the underlying mechanisms are still poorly understood. In this paper, we use 2D magnetohydrodynamic simulations to investigate the magnetic reconnection in two merging flux ropes, focusing on the effects of the resistivity on the time variation of the reconnection. We consider both uniform resistivity and current-dependent anomalous resistivity profiles. Our findings reveal that resistivity plays a critical role in controlling the reconnection dynamics, including reconnection rate oscillations and the rate of decay of the reconnection rate. Resistivity also influences the oscillations in emitted gyrosynchrotron radiation. However, in contrast to this strong influence of resistivity on reconnection rates, we observed a different behaviour for the emitted waves, whose frequencies are almost independent of resistivity variations.
title The effects of resistivity on oscillatory reconnection and consequences for solar flare Quasi Periodic Pulsations
topic Solar and Stellar Astrophysics
Plasma Physics
Space Physics
url https://arxiv.org/abs/2410.14563