Global Properties of Solar Flares
arXiv:1108.3490 · doi:10.1007/s11214-010-9721-4
Abstract
This article broadly reviews our knowledge of solar flares. There is a particular focus on their global properties, as opposed to the microphysics such as that needed for magnetic reconnection or particle acceleration as such. Indeed solar flares will always remain in the domain of remote sensing, so we cannot observe the microscales directly and must understand the basic physics entirely via the global properties plus theoretical inference. The global observables include the general energetics -radiation in flares and mass loss in coronal mass ejections (CMEs) - and the formation of different kinds of ejection and global wave disturbance: the type II radio-burst exciter, the Moreton wave, the EIT "wave," and the "sunquake" acoustic waves in the solar interior. Flare radiation and CME kinetic energy can have comparable magnitudes, of order 10^32 erg each for an X-class event, with the bulk of the radiant energy in the visible-UV continuum. We argue that the impulsive phase of the flare dominates the energetics of all of these manifestations, and also point out that energy and momentum in this phase largely reside in the electromagnetic field, not in the observable plasma
References in corpus (8)
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- No Trace Left Behind: Stereo Observation of a Coronal Mass Ejection without Low Coronal Signatures
- RHESSI Microflare Statistics II. X-ray Imaging, Spectroscopy & Energy Distributions
- The spectral evolution of impulsive solar X-ray flares
- Do all Flares have White Light Emission?
- Nonlinear force-free models for the solar corona I. Two active regions with very different structure
- Analytic modeling of the Moreton wave kinematics
- On the Brightening Propagation of Post-Flare Loops Observed by TRACE
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- Modeling Repeated M-dwarf Flaring at an Earth-like Planet in the Habitable Zone: I. Atmospheric Effects for an Unmagnetized Planet
- Modelling Quasi-Periodic Pulsations in Solar and Stellar Flares
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- Response of the Photospheric Magnetic Field to the X2.2 Flare on 2011 February 15
- A Database of Flare Ribbon Properties From Solar Dynamics Observatory I: Reconnection Flux
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- The Magnetic Energy - Helicity Diagram of Solar Active Regions
- Magnetic Energy and Helicity Budgets in the Active-Region Solar Corona. II. Nonlinear Force-Free Approximation
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- The Statistical Relationship between White-light Emission and Photospheric Magnetic Field Changes in Flares
- SWAP Observations of Post-flare Giant Arches in the Long-Duration 14 October 2014 Solar Eruption
- Extreme Ultraviolet Late-Phase Flares: Before and During the Solar Dynamics Observatory Mission
- Thermodynamic Spectrum of Solar Flares Based on SDO/EVE Observations: Techniques and Statistical Results
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- Recurring Homologous Solar Eruptions in NOAA AR 11429
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- Uncovering the Birth of a Coronal Mass Ejection from Two-Viewpoint SECCHI Observations
- Flare reconnection-driven magnetic field and Lorentz force variations at the Sun's surface
- Numerical Study on Excitation of Turbulence and Oscillation in Above-the-loop-top Region of a Solar Flare
- Diagnostic functions of solar coronal magnetic fields from radio observations
- Superflare UV flashes impact on Kepler-96 system: a glimpse of habitability when the ozone layer first formed on Earth
- A Statistical Study to Determine the Origin of Long-Duration Gamma-ray Flares
- Magnetic Gradient: A Natural Driver of Solar Eruptions
- Measurements and Modeling of Total Solar Irradiance in X-Class Solar Flares
- Extreme-ultraviolet Late Phase Caused by Magnetic Reconnection over Quadrupolar Magnetic Configuration in a Solar Flare
- A Simple Way to Estimate the Soft X-ray Class of Far-Side Solar Flares Observed with STEREO/EUVI
- Search for GeV Neutrino Emission During Intense Gamma-Ray Solar Flares with the IceCube Neutrino Observatory
- Non-Thermal "Burst-on-Tail" of Long-Duration Solar Event on 26 October 2003
- Variations of the 3-D coronal magnetic field associated with the X3.4-class solar flare event of AR 10930
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- The 2019 International Women's Day event: A two-step solar flare with multiple eruptive signatures and low Earth impact
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- White-light Continuum Observation of the Off-limb Loops of the SOL2017-09-10 X8.2 Flare: Temporal and Spatial Variations
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- Superflares on solar-like stars: A new method for identifying the true flare sources in photometric surveys
- Relaxation of magnetic field relative to plasma density revealed from microwave zebra patterns associated with solar flares
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- The Lyman-alpha Emission in Solar Flares. I. a Statistical Study on Its Relationship with the 1--8 Å Soft X-ray Emission
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- Solar Eruption and Local Magnetic Parameters
- Investigation of two coronal mass ejections from circular ribbon source region: Origin, Sun-Earth propagation and Geo-effectiveness
- Simultaneous X-ray and optical variability of M dwarfs observed with eROSITA and TESS
- A New Approach to Solar Flare Prediction
- High-resolution Observations of a C9.3 White-light Flare and Its Impact on the Solar Photosphere
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- Modeling Hadronic Gamma-ray Emissions from Solar Flares and Prospects for Detecting Non-thermal Signatures from Protostars
- Hamiltonian formulation of X-point collapse in an extended magnetohydrodynamics framework
- Observation of 2011-02-15 X2.2 flare in Hard X-ray and Microwave
- Space weather: the solar perspective -- an update to Schwenn (2006)
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- Type II radio bursts and space weather phenomena: A statistical study
- Multi-wavelength observations of the 2014 June 11 M3.9 flare: temporal and spatial characteristics
- Chirality and magnetic configuration associated with two-ribbon solar flares: AR 10930 versus AR 11158
- Characterising Solar Magnetic Reconnection in Confined and Eruptive Flares
- ALEXIS: Recreating the X-Ray Emission from the Full Solar Disk as a Linear Combination of Discrete Regions in the Extreme Ultraviolet and Soft X-Rays
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