Extreme Ultraviolet Imaging of Three-dimensional Magnetic Reconnection in a Solar Eruption
arXiv:1506.08255 · doi:10.1038/ncomms8598
Abstract
Magnetic reconnection, a change of magnetic field connectivity, is a fundamental physical process in which magnetic energy is released explosively. It is responsible for various eruptive phenomena in the universe. However, this process is difficult to observe directly. Here, the magnetic topology associated with a solar reconnection event is studied in three dimensions (3D) using the combined perspectives of two spacecraft. The sequence of extreme ultraviolet (EUV) images clearly shows that two groups of oppositely directed and non-coplanar magnetic loops gradually approach each other, forming a separator or quasi-separator and then reconnecting. The plasma near the reconnection site is subsequently heated from 1 to 5 MK. Shortly afterwards, warm flare loops (3 MK) appear underneath the hot plasma. Other observational signatures of reconnection, including plasma inflows and downflows, are unambiguously revealed and quantitatively measured. These observations provide direct evidence of magnetic reconnection in a 3D configuration and reveal its origin.
16 pages, 4 figures, Nature Communications 6, Article number: 7598
References in corpus (9)
- Torus instability
- Chromospheric Anemone Jets as Evidence of Ubiquitous Reconnection
- X-Ray Flares from Postmerger Millisecond Pulsars
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Propagation of an Earth-directed coronal mass ejection in three dimensions
- A Magnetohydrodynamic Model for the Formation of Episodic Jets
- Formation of a Double-decker Magnetic Flux Rope in the Sigmoidal Solar Active Region 11520
- Satellite Observations of Separator Line Geometry of Three-Dimensional Magnetic Reconnection
- Magnetic reconnection between small-scale loops observed with the New Vacuum Solar Telescope
Cited by in corpus (20)
- Initiation and Early Kinematic Evolution of Solar Eruptions
- Stellar flares observed in long cadence data from the Kepler mission
- Magnetic Reconnection During the Post-Impulsive Phase of a Long-Duration Solar Flare: Bi-Directional Outflows as a Cause of Microwave and X-ray Bursts
- Ultra-high-resolution Observations of Persistent Null-point Reconnection in the Solar Corona
- Three-dimensional magnetic reconnection in astrophysical plasmas
- Microwave Imaging of Quasi-periodic Pulsations at Flare Current Sheet
- Formation of solar quiescent coronal loops through magnetic reconnection in an emerging active region
- Imaging Observations of Magnetic Reconnection in a Solar Eruptive Flare
- Observations of Reconnection Flows in a Flare on the Solar Disk
- Observation of Magnetic reconnection at a 3D null point associated with a solar eruption
- The Causes of Peripheral Coronal Loop Contraction and Disappearance Revealed in a Magnetohydrodynamic Simulation of Solar Eruption
- Evolution of Kelvin-Helmholtz Instability in the Fan-Spine Topology
- Formation and Dynamics of Transequatorial Loops
- Three-dimensional Magnetic and Thermodynamic Structures of Solar Microflares
- An Observational Test of Solar Plasma Heating by Magnetic Flux Cancellation
- MOCKA -- A PLATO mock asteroseismic catalogue: Simulations for gravity-mode oscillators
- Moving Plasma Structures and Possible Driving Mechanisms of Solar Microflares Observed with High-Resolution Coronal Imaging
- Coronal heating problem solution by means of axion origin photons
- Astro2020 Science White Paper: Probing Magnetic Reconnection in Solar Flares - New Perspectives from Radio Dynamic Imaging Spectroscopy
- A view of the evolution of a CME and the associated wave-trains at high spatial and temporal resolution