Global maps of the magnetic field in the solar corona
arXiv:2008.03136 · doi:10.1126/science.abb4462
Abstract
Understanding many physical processes in the solar atmosphere requires determination of the magnetic field in each atmospheric layer. However, direct measurements of the magnetic field in the Sun's corona are difficult to obtain. Using observations with the Coronal Multi-channel Polarimeter, we have determined the spatial distribution of the plasma density in the corona, and the phase speed of the prevailing transverse magnetohydrodynamic waves within the plasma. We combine these measurements to map the plane-of-sky component of the global coronal magnetic field. The derived field strengths in the corona from 1.05 to 1.35 solar radii are mostly 1-4 Gauss. These results demonstrate the capability of imaging spectroscopy in coronal magnetic field diagnostics.
Published in Science, File includes the main text and supplementary materials. This is the author's version of the work. It is posted here by permission of the AAAS for personal use, not for redistribution. The definitive version was published in Science , (2020-08-07), doi: 10.1126/science.abb4462 (https://science.sciencemag.org/content/369/6504/694)
References in corpus (11)
- CHIANTI - an atomic database for emission lines - Paper XV: Version 9, improvements for the X-ray satellite lines
- Persistent Doppler shift oscillations observed with HINODE/EIS in the solar corona: spectroscopic signatures of Alfvenic waves and recurring upflows
- The Magnetic Field in the Solar Atmosphere
- A basal contribution from p-modes to the Alfvénic wave flux in the Sun's corona
- A global view of velocity fluctuations in the corona below 1.3 with CoMP
- Mapping the magnetic field of flare coronal loops
- Open questions on prominences from coordinated observations by IRIS, Hinode, SDO/AIA, THEMIS, and the Meudon/MSDP
- Solar coronal lines in the visible and infrared. A rough guide
- A Coherence-Based Approach for Tracking Waves in the Solar Corona
- Damping of Propagating Kink Waves in the Solar Corona
- Statistical Evidence for the Existence of Alfvénic Turbulence in Solar Coronal Loops
Cited by in corpus (9)
- Coronal heating by MHD waves
- Upflows in the upper solar atmosphere
- The source of the major solar energetic particle events from super active region 11944
- Transverse loop oscillations via vortex shedding: a self oscillating process
- Magnetic reconnection between loops accelerated by a nearby filament eruption
- Electron Densities in the Solar Corona Measured Simultaneously in the Extreme-Ultraviolet and Infra-Red
- Damping of slow surface kink modes in solar photospheric waveguides modeled by one-dimensional inhomogeneities
- Small-scale Bright Blobs Ejected from a Sunspot Light Bridge
- Challenges and Advances in Modeling of the Solar Atmosphere: A White Paper of Findings and Recommendations