Statistical Studies of Solar White-Light Flares and Comparisons with Superflares on Solar-type Stars
arXiv:1710.11325 · doi:10.3847/1538-4357/aa9b34
Abstract
Recently, many superflares on solar-type stars have been discovered as white-light flares (WLFs). The statistical study found a correlation between their energies () and durations (): (Maehara et al. 2017 , 67, 59), similar to those of solar hard/soft X-ray flares: . This indicates a universal mechanism of energy release on solar and stellar flares, i.e., magnetic reconnection. We here carried out a statistical research on 50 solar WLFs observed with \textit{SDO}/HMI and examined the correlation between the energies and durations. As a result, the -- relation on solar WLFs () is quite similar to that on stellar superflares (). However, the durations of stellar superflares are one order of magnitude shorter than those expected from solar WLFs. We present the following two interpretations for the discrepancy. (1) In solar flares, the cooling timescale of WLFs may be longer than the reconnection one, and the decay time of solar WLFs can be elongated by the cooling effect. (2) The distribution can be understood by applying a scaling law () derived from the magnetic reconnection theory. In this case, the observed superflares are expected to have 2-4 times stronger magnetic field strength than solar flares.
43 pages, 15 figures, accepted for publication in ApJ
References in corpus (15)
- The Transiting Exoplanet Survey Satellite
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Kepler Flares I. Active and Inactive M dwarfs
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- Statistical properties of superflares on solar-type stars based on 1-min cadence data
- Magnetic Properties of Solar Active Regions that Govern Large Solar Flares and Eruptions
- Do all Flares have White Light Emission?
- Hydrogen Balmer Continuum in Solar Flares Detected by the Interface Region Imaging Spectrograph (IRIS)
- Hydrogen Balmer Line Broadening in Solar and Stellar Flares
- High Dispersion Spectroscopy of Solar-type Superflare Stars. II. Stellar Rotation, Starspots, and Chromospheric Activities
- Scaling Relations in Coronal Mass Ejections and Energetic Proton Events associated with Solar Superflares
- Large X-ray Flares on Stars Detected with MAXI/GSC: A Universal Correlation between the Duration of a Flare and its X-ray Luminosity
- On the nature of off-limb flare continuum sources detected by SDO/HMI
- Validation of a Scaling Law for the Coronal Magnetic Field Strengths and Loop Lengths of Solar and Stellar Flares
- Temporal evolution and spatial distribution of white-light flare kernels in a solar flare