Origins of the Ambient Solar Wind: Implications for Space Weather
arXiv:1708.07169 · doi:10.1007/s11214-017-0416-y
Abstract
The Sun's outer atmosphere is heated to temperatures of millions of degrees, and solar plasma flows out into interplanetary space at supersonic speeds. This paper reviews our current understanding of these interrelated problems: coronal heating and the acceleration of the ambient solar wind. We also discuss where the community stands in its ability to forecast how variations in the solar wind (i.e., fast and slow wind streams) impact the Earth. Although the last few decades have seen significant progress in observations and modeling, we still do not have a complete understanding of the relevant physical processes, nor do we have a quantitatively precise census of which coronal structures contribute to specific types of solar wind. Fast streams are known to be connected to the central regions of large coronal holes. Slow streams, however, appear to come from a wide range of sources, including streamers, pseudostreamers, coronal loops, active regions, and coronal hole boundaries. Complicating our understanding even more is the fact that processes such as turbulence, stream-stream interactions, and Coulomb collisions can make it difficult to unambiguously map a parcel measured at 1 AU back down to its coronal source. We also review recent progress -- in theoretical modeling, observational data analysis, and forecasting techniques that sit at the interface between data and theory -- that gives us hope that the above problems are indeed solvable.
Accepted for publication in Space Science Reviews. Special issue connected with a 2016 ISSI workshop on "The Scientific Foundations of Space Weather." 44 pages, 9 figures
References in corpus (37)
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: SHARPs -- Space-weather HMI Active Region Patches
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- Understanding space weather to shield society: A global road map for 2015-2025 commissioned by COSPAR and ILWS
- Solar Coronal Jets: Observations, Theory, and Modeling
- Prevalence of Small-scale Jets from the Networks of the Solar Transition Region and Chromosphere
- Observing the Roots of Solar Coronal Heating - in the Chromosphere
- Acceleration and propagation of Solar Energetic Particles
- Constraints on the Global Structure of Magnetic Clouds: Transverse Size and Curvature
- Forecasting Solar Wind Speeds
- Fading Coronal Structure and the Onset of Turbulence in the Young Solar Wind
- 3D Radio and X-Ray Modeling and Data Analysis Software: Revealing Flare Complexity
- Spectroscopic signature of Alfvén waves damping in a polar coronal hole up to 0.4 solar radii
- Impact of CIR Storms on Thermosphere Density Variability during the Solar Minimum of 2008
- Improved Constraints on the Preferential Heating and Acceleration of Oxygen Ions in the Extended Solar Corona
- The Solar-Stellar Connection
- A model for straight and helical solar jets: II. Parametric study of the plasma beta
- The Coronal Global Evolutionary Model: Using HMI Vector Magnetogram and Doppler Data to Model the Buildup of Free Magnetic Energy in the Solar Corona
- Reconnection-Driven Coronal-Hole Jets with Gravity and Solar Wind
- Ensemble Simulations of Proton Heating in the Solar Wind via Turbulence and Ion Cyclotron Resonance
- Suprathermal Electrons in the Solar Corona: Can Nonlocal Transport Explain Heliospheric Charge States?
- Plasma Heating During a Coronal Mass Ejection Observed by SOHO
- Real-time solar wind prediction based on SDO/AIA coronal hole data
- Direct and Inverse Cascades in the Acceleration Region of the Fast Solar Wind
- A Steady-State Picture of Solar Wind Acceleration and Charge State Composition Derived from a Global Wave-Driven MHD Model
- Interchange Reconnection Alfven Wave Generation
- Are Chromospheric Nanoflares a Primary Source of Coronal Plasma?
- Turbulence-Driven Coronal Heating and Improvements to Empirical Forecasting of the Solar Wind
- Charge States and FIP Bias of the Solar Wind from Coronal Holes, Active Regions, and Quiet Sun
- Magnetic nulls and super-radial expansion in the solar corona
- Coronal Pseudo-Streamer and Bipolar Streamer Observed by SOHO/UVCS in March 2008
- Long-Term Tracking of Corotating Density Structures using Heliospheric Imaging
- On the Parallel and Perpendicular Propagating Motions Visible in Polar Plumes: An Incubator For (Fast) Solar Wind Acceleration?
- Evolution of active region outflows throughout an active region lifetime
- Spectroscopic evidence of Alfvén wave damping in the off-limb solar corona
- Space Weather and Solar Wind Studies with OWFA
- ROAM: a Radial-basis-function Optimization Approximation Method for diagnosing the three-dimensional coronal magnetic field
- Why is the Fast Solar Wind Fast and the Slow Solar Wind Slow? A Survey of Geometrical Models
Cited by in corpus (37)
- The Solar Orbiter mission -- Science overview
- First light observations of the solar wind in the outer corona with the Metis coronagraph
- Implementing the MULTI-VP coronal model in EUHFORIA: test case results and comparisons with the WSA coronal model
- Stirring the Base of the Solar Wind: On Heat Transfer and Vortex Formation
- Assessing the Influence of Input Magnetic Maps on Global Modeling of the Solar Wind and CME-driven Shock in the 2013 April 11 Event
- Causes and Consequences of Magnetic Complexity Changes within Interplanetary Coronal Mass Ejections: a Statistical Study
- Predicting Solar Wind Streams from the Inner-Heliosphere to Earth via Shifted Operator Inference
- Flux conservation, radial scalings, Mach numbers, and critical distances in the solar wind: magnetohydrodynamics and Ulysses observations
- Directly comparing coronal and solar wind elemental fractionation
- Exploring the radial evolution of Interplanetary Coronal Mass Ejections using EUHFORIA
- Validation scheme for solar coronal models -- constraints from multi-perspective observations in EUV and white-light
- Evolution of interplanetary coronal mass ejection complexity: a numerical study through a swarm of simulated spacecraft
- Modeling Solar Wind Variations over an 11-yr Cycle with Alfvén Wave Dissipation: a Parameter Study
- Characteristic Scales of Complexity and Coherence within Interplanetary Coronal Mass Ejections: Insights from Spacecraft Swarms in Global Heliospheric Simulations
- Slow wind belt in the quiet solar corona
- Source-dependent properties of two slow solar wind states
- A Comprehensive Simulation of Solar Wind Formation from the Solar Interior: Significant Cross-field Energy Transport by Interchange Reconnection near the Sun
- Influence of coronal hole morphology on the solar wind speed at Earth
- How Turbulent is the Magnetically Closed Corona?
- Modelling the connection between propagating disturbances and solar spicules
- Slow Solar Wind Connection Science during Solar Orbiter's First Close Perihelion Passage
- Estimating uncertainties in the back-mapping of the fast solar wind
- SPICE Connection Mosaics to link the Sun's surface and the heliosphere
- Polarimeter to Unify the Corona and Heliosphere (PUNCH)
- Laminar and Turbulent Plasmoid Ejection in a Laboratory Parker Spiral Current Sheet
- Thermal and Non-Thermal Properties of Active Region Recurrent Coronal Jets
- The Merging of a Coronal Dimming and the Southern Polar Coronal Hole
- Comparison of the Scaling Properties of EUV Intensity Fluctuations in Coronal Hole and Quiet-Sun Regions
- Space weather: the solar perspective -- an update to Schwenn (2006)
- Magnetic connectivity from the Sun to the Earth with MHD models I. Impact of the magnetic modelling for connectivity validation
- Constraints on the variable nature of the slow solar wind with the Wide-Field Imager on board the Parker Solar Probe
- SynCOM: An Empirical Model for High-Resolution Simulations of Transient Solar Wind Flows
- Comparative analysis of two episodes of strongly geoeffective CME events in November and December 2023
- Earth-affecting Solar Transients: A Review of Progresses in Solar Cycle 24
- Testing the Alfvén-wave model of the solar wind with interplanetary scintillation
- Coronal hole evolution from multi-viewpoint data as input for a STEREO solar wind speed persistence model
- The influence of Parker spiral on the reflection-driven turbulence