Superflare occurrence and energies on G-, K- and M-type dwarfs
arXiv:1405.1453 · doi:10.1088/0004-637X/792/1/67
Abstract
Kepler data from G-, K- and M-type stars are used to study conditions that lead to superflares with energies above . From the 117,661 stars included, 380 show superflares with a total of 1690 such events. We study whether parameters, like effective temperature or the rotation rate, have any effect on the superflare occurrence rate or energy. With increasing effective temperature we observe a decrease in the superflare rate, which is analogous to the previous findings of a decrease in dynamo activity with increasing effective temperature. For slowly rotating stars, we find a quadratic increase of the mean occurrence rate with the rotation rate up to a critical point, after which the rate decreases linearly. Motivated by standard dynamo theory, we study the behavior of the relative starspot coverage, approximated as the relative brightness variation. For faster rotating stars, an increased fraction of stars shows higher spot coverage, which leads to higher superflare rates. A turbulent dynamo is used to study the dependence of the Ohmic dissipation as a proxy of the flare energy on the differential rotation or shear rate. The resulting statistics of the dissipation energy as a function of dynamo number is similar to the observed flare statistics as a function of the inverse Rossby number and shows similarly strong fluctuations. This supports the idea that superflares might well be possible for solar-type G stars.
9 pages, 14 figures, published in ApJ
References in corpus (11)
- The stellar activity-rotation relationship and the evolution of stellar dynamos
- Superflares on Solar Type Stars Observed with Kepler I. Statistical Properties of Superflares
- The case for a distributed solar dynamo shaped by near-surface shear
- Rotation and differential rotation of active Kepler stars
- Can Superflares Occur on Our Sun?
- Superflares on Solar-Type Stars Observed with Kepler II. Photometric Variability of Superflare-Generating Stars : A Signature of Stellar Rotation and Starspots
- Kepler Eclipsing Binary Stars. III. Classification of Kepler Eclipsing Binary Light Curves with Locally Linear Embedding
- Using Coronal Loops to Reconstruct the Magnetic Field of an Active Region Before and After a Major Flare
- A dynamo model of magnetic activity in solar-like stars with different rotational velocities
- Two Sun-like Superflare Stars Rotating as Slow as the Sun
- Cycles and cycle modulations
Cited by in corpus (66)
- Impact of Space Weather on Climate and Habitability of Terrestrial Type Exoplanets
- Statistical properties of superflares on solar-type stars based on 1-min cadence data
- Extreme solar events
- Do Kepler superflare stars really include slowly-rotating Sun-like stars ? - Results using APO 3.5m telescope spectroscopic observations and Gaia-DR2 data -
- Quasi-periodic pulsations in solar and stellar flares: an overview of recent results
- Flare Statistics for Young Stars from a Convolutional Neural Network Analysis of Data
- The flare catalog and the flare activity in the Kepler mission
- Persistence of Flare-Driven Atmospheric Chemistry on Rocky Habitable Zone Worlds
- Statistical Properties of Superflares on Solar-type Stars: Results Using All of the Kepler Primary Mission Data
- The Evolution of Flare Activity with Stellar Age
- Statistical Properties of Quasi-Periodic Pulsations in White-Light Flares Observed With Kepler
- Risks for life on habitable planets from superflares of their host stars
- Starspot activity and superflares on solar-type stars
- Stellar flares observed in long cadence data from the Kepler mission
- EvryFlare I: Long-term Evryscope Monitoring of Flares from the Cool Stars Across Half the Southern Sky
- About Exobiology: The Case for Dwarf K Stars
- Flares in Open Clusters with K2. I. M45 (Pleiades), M44 (Praesepe) and M67
- Time resolved spectroscopic observations of an M-dwarf flare star EV Lacertae during a flare
- A census of Coronal Mass Ejections on solar-like stars
- White-Light Flares on Close Binaries Observed with Kepler
- Modeling Stellar Proton Event-induced particle radiation dose on close-in exoplanets
- K2 Ultracool Dwarfs Survey II: The White Light Flare Rate of Young Brown Dwarfs
- Activity Analyses for Solar-Type Stars Observed With Kepler. I. Proxies of Magnetic Activity
- New Insights into Cosmic Ray induced Biosignature Chemistry in Earth-like Atmospheres
- Records of Sunspots and Aurora Candidates in the Chinese Official Histories of the Yuán and Míng Dynasties during 1261-1644
- High Dispersion Spectroscopy of Solar-type Superflare Stars. I. Temperature, Surface Gravity, Metallicity, and
- On the Diversity of M-Star Astrospheres and the Role of Galactic Cosmic Rays Within
- A New Model Suite to Determine the Influence of Cosmic Rays on (Exo)planetary Atmospheric Biosignatures -- Validation based on Modern Earth
- The Propitious Role of Solar Energetic Particles in the Origin of Life
- Do long-cadence data of {\it Kepler} satellite capture the basic properties of flares ?
- Ground-based detection of G star superflares with NGTS
- Atmospheric mass loss from hot Jupiters irradiated by stellar superflares
- Modelling variability of solar activity cycles
- The Statistical Relationship between White-light Emission and Photospheric Magnetic Field Changes in Flares
- Enhanced stellar activity for slow antisolar differential rotation?
- Dynamo model for grand maxima of solar activity: can superflares occur on the Sun?
- K2 Ultracool Dwarfs Survey I: Photometry of an L Dwarf Superflare
- An increased rate of large flares at intermediate rotation periods for mid-to-late M dwarfs
- K2 Ultracool Dwarfs Survey. IV. Monster flares observed on the young brown dwarf CFHT-BD-Tau 4
- A Superflare on YZ Canis Minoris Observed by Seimei Telescope and TESS: Red Asymmetry of H Emission Associated with White-Light Emission
- Correcting Stellar Flare Frequency Distributions Detected by TESS and Kepler
- Different contributions to space weather and space climate from different big solar active regions
- Can superflares occur on the Sun? A view from dynamo theory
- Spectroscopic observations of active solar-analog stars having high X-ray luminosity, as a proxy of superflare stars
- Early optical follow-up of the nearby active star DG CVn during its 2014 superflare
- Stellar flare morphology with TESS across the main sequence
- Photometric Flaring Fraction of M dwarf Stars from the SkyMapper Southern Survey
- LO Peg: surface differential rotation, flares, and spot-topographic evolution
- SMA detection of an extreme millimeter flare from the young class III star HD 283572
- Further evidence of the link between activity and metallicity using the flaring properties of stars in the Kepler field
- A Maximum Entropy Principle for inferring the Distribution of 3D Plasmoids
- Flares on A-type stars: Evidence for heating of solar corona by nanoflares?
- Frequent flare events on the short-period M-type eclipsing binary BX Tri
- Flare Activity and Magnetic Feature Analysis of the Flare Stars
- Spectroscopic observations of flares and superflares on AU Mic
- Observation of a possible superflare on Proxima Centauri
- Simultaneous X-ray and optical variability of M dwarfs observed with eROSITA and TESS
- Blackbody temperature of 200+ stellar flares observed with the CoRoT satellite
- Solar extreme events
- A Seven-Day Multi-Wavelength Flare Campaign on AU Mic III: Quiescent and Flaring Properties of the X-ray Spectra and Chromospheric lines
- Theoretical and Observational Evidence for Coriolis Effects in Coronal Magnetic Fields Via Direct Current Driven Flaring Events
- High dispersion spectroscopy of solar-type superflare stars with Subaru/HDS
- Exploring stellar activity in a sample of active M dwarfs
- VIEWPOINT: A New Twist in Simulating Solar Flares
- Time Domain Astronomy with the THESEUS Satellite
- Coronal Mass Ejections and Exoplanets: A Numerical Perspective