The "FIP Effect" and the Origins of Solar Energetic Particles and of the Solar Wind
arXiv:1801.05840 · doi:10.1007/s11207-018-1267-8
Abstract
We find that the element abundances in solar energetic particles (SEPs) and in the slow solar wind (SSW), relative to those in the photosphere, show different patterns as a function of the first ionization potential (FIP) of the elements. Generally, the SEP and SSW abundances reflect abundance samples of the solar corona, where low-FIP elements, ionized in the chromosphere, are more efficiently conveyed upward to the corona than high-FIP elements that are initially neutral atoms. Abundances of the elements, especially C, P, and S show a crossover from low to high FIP at ~10 eV in the SEPs but ~14 eV for the solar wind. Naively this seems to suggest cooler plasma from sunspots beneath active regions. More likely, if the ponderomotive force of Alfvén waves preferentially conveys low-FIP ions into the corona, the source plasma that eventually will be shock-accelerated as SEPs originates in magnetic structures where Alfvén waves resonate with the loop length on closed magnetic field lines. This concentrates FIP fractionation near the top of the chromosphere. Meanwhile, the source of the SSW may lie near the base of diverging open-field lines surrounding, but outside of, active regions, where such resonance does not exist, allowing fractionation throughout the chromosphere. We also find that energetic particles accelerated from the solar wind itself by shock waves at corotating interaction regions (CIRs), generally beyond 1 AU, confirm the FIP pattern of the solar wind.
11 pages, 2 figures, accepted for publication in Solar Physics
References in corpus (4)
- Abundance Enhancements in Impulsive Solar Energetic-Particle Events with Associated Coronal Mass Ejections
- The First Ionization Potential Effect from the Ponderomotive Force: On the Polarization and Coronal Origin of the Alfven Waves
- Abundances, Ionization States, Temperatures, and FIP in Solar Energetic Particles
- The Abundance of Helium in the Source Plasma of Solar Energetic Particles
Cited by in corpus (34)
- The Properties of the Solar Corona and Its Connection to the Solar Wind
- Solar Energetic Particles (Second Edition)
- Element Abundances: A New Diagnostic for the Solar Wind
- Abundances, Ionization States, Temperatures, and FIP in Solar Energetic Particles
- Four Distinct Pathways to the Element Abundances in Solar Energetic Particles
- Sixty Years of Element Abundance Measurements in Solar Energetic Particles
- The drivers of active region outflows into the slow solar wind
- Directly comparing coronal and solar wind elemental fractionation
- Linking the Sun to the Heliosphere Using Composition Data and Modelling. A Test Case with a Coronal Jet
- How Do Shock Waves Define the Space-Time Structure of Gradual Solar Energetic Particle Events?
- Hydrogen and the Abundances of Elements in Impulsive Solar Energetic-Particle Events
- Hydrogen and the Abundances of Elements in Gradual Solar Energetic-Particle Events
- Distinguishing the Rigidity Dependences of Acceleration and Transport in Solar Energetic Particles
- Helium Suppression in Impulsive Solar Energetic-Particle Events
- Coronal Densities, Temperatures and Abundances During the 2019 Total Solar Eclipse: The Role of Multi-Wavelength Observations in Coronal Plasma Characterization
- On the Correlation between Energy Spectra and Element Abundances in Solar Energetic Particles
- Solar Energetic Particles: Spatial Extent and Implications of the H and He Abundances
- Corotating Shock Waves and the Solar-Wind Source of Energetic Ion Abundances: Power Laws in A/Q
- Excess H, Suppressed He, and the Abundances of Elements in Solar Energetic Particles
- Magnetic Field Geometry and Composition Variation in Slow Solar Winds: The Case of Sulfur
- SPICE Connection Mosaics to link the Sun's surface and the heliosphere
- Energy Spectra vs. Element Abundances in Solar Energetic Particles and the Roles of Magnetic Reconnection and Shock Acceleration
- Element Abundances of Solar Energetic Particles and the Photosphere, the Corona, and the Solar Wind
- New Solar Flare Calcium Abundances with no Surprises: Results from the SMM Bent Crystal Spectrometer
- Solar Energetic Particle Charge States and Abundances with Nonthermal Electrons
- Element Abundances in Impulsive Solar Energetic Particle Events
- Differential behaviors of suprathermal He and Fe populations in the interplanetary medium during solar cycle 24
- Disparity among low first ionization potential elements
- Seeds and Sequences of Element Abundances in Solar Energetic Particle Events
- Solar Particle Acceleration
- Virtues of Including Hydrogen in the Patterns of Element Abundances in Solar Energetic Particles
- FIP Bias Evolution in an Emerging Active Region as observed in SPICE Synoptic Observations
- Sulfur fractionation in coronal plumes as observed by Solar Orbiter/SPICE
- A Perspective on Solar Energetic Particles