Properties of Flare-Imminent versus Flare-Quiet Active Regions from the Chromosphere through the Corona I: Introduction of the AIA Active Region Patches (AARPs)
arXiv:2212.11251 · doi:10.3847/1538-4357/ac9c06
Abstract
We begin here a series of papers examining the chromospheric and coronal properties of solar active regions. This first paper describes an extensive dataset of images from the Atmospheric Imaging Assembly on the Solar Dynamics Observatory curated for large-sample analysis of this topic. Based on (and constructed to coordinate with) the ``Active Region Patches'' as identified by the pipeline data analysis system for the Helioseismic and Magnetic Imager (HMI) on the same mission, the ``HARPs''), the ``AIA Active Region Patches'' (AARPs), described herein, comprise an unbiased multi-wavelength set of FITS files downsampled spatially only by way of HARP-centered patch extractions (full spatial sampling is retained), and downsampled in the temporal domain but still able to describe both short-lived kinematics and longer-term trends. The AARPs database enables physics-informed parametrization and analysis using Nonparametric Discriminant Analysis in Paper II of this series, and is validated for analysis using Differential Emission Measure techniques. The AARP dataset presently covers mid-2010 through December 2018, is approx 9TB in size, and available through the Solar Data Analysis Center.
Astrophysical Journal, in press
References in corpus (21)
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: SHARPs -- Space-weather HMI Active Region Patches
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: Overview and Performance
- Solar Flare Prediction Using SDO/HMI Vector Magnetic Field Data with a Machine-Learning Algorithm
- Thermal Diagnostics with the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory: A Validated Method for Differential Emission Measure Inversions
- Solar Flare Prediction Model with Three Machine-Learning Algorithms Using Ultraviolet Brightening and Vector Magnetogram
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: Optimization of the Spectral Line Inversion Code
- What is the relationship between photospheric flow fields and solar flares?
- A Machine Learning Dataset Prepared From the NASA Solar Dynamics Observatory Mission
- Double arc instability in the solar corona
- An automated classification approach to ranking photospheric proxies of magnetic energy build-up
- Formation of the helium EUV resonance lines
- Pre-flare coronal dimmings
- Observations and Modelling of the Pre-Flare Period of the 29 March 2014 X1 Flare
- Coronal Behavior Before the Large Flare Onset
- Gradual Solar Coronal Dimming and Evolution of Coronal Mass Ejection in the Early Phase
- Properties of Flare-Imminent versus Flare-Quiet Active Regions from the Chromosphere through the Corona II: NonParametric Discriminant Analysis Results from the NWRA Classification Infrastructure (NCI)
- Strong Blue Asymmetry in Hα line as a Preflare Activity
- Comparison between Hinode/SOT and SDO/HMI, AIA Data for the Study of the Solar Flare Trigger Process
- Modeling Coronal Response in Decaying Active Regions with Magnetic Flux Transport and Steady Heating
- Increase in the amplitude of line-of-sight velocities of the small-scale motions in a solar filament before eruption
- Magnetic Helicity Flux across Solar Active Region Photospheres: II. Association of Hemispheric Sign Preference with Flaring Activity during Solar Cycle 24
Cited by in corpus (3)
- Properties of Flare-Imminent versus Flare-Quiet Active Regions from the Chromosphere through the Corona II: NonParametric Discriminant Analysis Results from the NWRA Classification Infrastructure (NCI)
- Solar Flare Prediction Using Long Short-term Memory (LSTM) and Decomposition-LSTM with Sliding Window Pattern Recognition
- 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