An atlas of coronal electron density at 5Rs I: Data processing and calibration
arXiv:1509.03113 · doi:10.1088/0067-0049/219/2/23
Abstract
Tomography of the solar corona can provide cruicial constraints for models of the low corona, unique information on changes in coronal structure and rotation rates, and a valuable boundary condition for models of the heliospheric solar wind. This is the first of a series of three papers which aim to create a set of maps of the coronal density over an extended period (1996-present). The papers will describe the data processing and calibration (this paper), the tomography method (\paperii) and resulting atlas of coronal electron density at a height of 5\Rs\ between years 1996-2014 (\paperiii). This first paper presents a detailed description of data processing and calibration for the Large-Angle and Spectrometric Coronagraph (LASCO) C2 instrument onboard the Solar and Heliospheric Observatory (SOHO) and the COR2 instruments of the Sun Earth Connection Coronal and Heliospheric Investigation (SECCHI) package aboard the Solar Terrestial Relations Observatory (STEREO) A \& B spacecraft. The methodology includes noise suppression, background subtraction, separation of large dynamic events, conversion of total brightness to K-coronal brightness and simple functions for crosscalibration between C2/LASCO and COR2/SECCHI. Comparison of the brightness of stars between LASCO C2 total and polarized brightness (\pB) observations provide in-flight calibration factors for the \pB\ observations, resulting in considerable improved agreement between C2 and COR2 A, and elimination of curious artifacts in the C2 \pB\ images. The crosscalibration between LASCO C2 and the STEREO coronagraphs allows, for the first time, the potential use of multi-spacecraft coronagraph data for tomography and for CME analysis.
50 pages, 28 figures
References in corpus (1)
Cited by in corpus (16)
- The width, density and outflow of solar coronal streamers
- Image enhancement with wavelet-optimized whitening
- CME Induced Thermodynamic Changes in the Corona as Inferred from Fe XI and Fe XIV Emission Observations during the 2017 August 21 Total Solar Eclipse
- Three-dimensional Density Structure of a Solar Coronal Streamer Observed by SOHO/LASCO and STEREO/COR2 in Quadrature
- Self-consistent propagation of flux ropes in realistic coronal simulations
- An atlas of coronal electron density at 5Rs II: A spherical harmonic method for density reconstruction
- A solar-cycle study of coronal rotation: large variations, rapid changes, and implications for solar wind models
- Automated detection of coronal mass ejections in three-dimensions using multi-viewpoint observations
- 3D electron density distributions in the solar corona during solar minima: assessment for more realistic solar wind modeling
- Erupting filaments with large enclosing flux tubes as sources of high-mass 3-part CMEs, and erupting filaments in the absence of enclosing flux tubes as sources of low-mass unstructured CMEs
- Tracking Non-Radial Outflows in Extreme Ultraviolet and White Light Solar Images
- Polarimeter to Unify the Corona and Heliosphere (PUNCH)
- Observations of the Solar F-corona from Space
- The Application of the Filtered Backprojection Algorithm to Solar Rotational Tomography
- Electron Density Reconstruction of Solar Coronal Mass Ejections Based on a Genetic Algorithm: Method and Application
- A Simple Radial Gradient Filter for Batch-Processing of Coronagraph Images