Power-Law Statistics Of Driven Reconnection In The Magnetically Closed Corona
arXiv:1801.05245 · doi:10.3847/1538-4357/aaa0d9
Abstract
Numerous observations have revealed that power-law distributions are ubiquitous in energetic solar processes. Hard X-rays, soft X-rays, extreme ultraviolet radiation, and radio waves all display power-law frequency distributions. Since magnetic reconnection is the driving mechanism for many energetic solar phenomena, it is likely that reconnection events themselves display such power-law distributions. In this work, we perform numerical simulations of the solar corona driven by simple convective motions at the photospheric level. Using temperature changes, current distributions, and Poynting fluxes as proxies for heating, we demonstrate that energetic events occurring in our simulation display power-law frequency distributions, with slopes in good agreement with observations. We suggest that the braiding-associated reconnection in the corona can be understood in terms of a self-organized criticality model driven by convective rotational motions similar to those observed at the photosphere.
Accepted by ApJ
References in corpus (14)
- Key Aspects of Coronal Heating
- 25 Years of Self-Organized Criticality: Solar and Astrophysics
- Convectively driven vortex flows in the Sun
- Automated Solar Flare Statistics in Soft X-rays over 37 Years of GOES Observations - The Invariance of Self-Organized Criticality during Three Solar Cycles
- The role of three-dimensional transport in driving enhanced electron acceleration during magnetic reconnection
- Evidence of photospheric vortex flows at supergranular junctions observed by FG/SOT (Hinode)
- Coexistence of Self-Organized Criticality and Intermittent Turbulence in the Solar Corona
- The Role of Magnetic Helicity in Structuring the Solar Corona
- The Mechanism for the Energy Buildup Driving Solar Eruptive Events
- 2D cellular automaton model for the evolution of active region coronal plasmas
- Modelling the influence of photospheric turbulence on solar flare statistics
- Evolution of small-scale magnetic elements in the vicinity of granular-size swirl convective motions
- A nanoflare based cellular automaton model and the observed properties of the coronal plasma
- Spatiotemporal organization of energy release events in the quiet solar corona
Cited by in corpus (15)
- The Properties of the Solar Corona and Its Connection to the Solar Wind
- Variability of the Reconnection Guide Field in Solar Flares
- What determines the X-ray intensity and duration of a solar flare?
- A Model for Energy Buildup and Eruption Onset in Coronal Mass Ejections
- Self-Organized Criticality in Solar and Stellar Flares: Are Extreme Events Scale-Free ?
- The Role of Twist in Kinked Flux Rope Emergence and Delta-Spot Formation
- The Role of Magnetic Helicity in Coronal Heating
- STITCH: A Subgrid-Scale Model for Energy Buildup in the Solar Corona
- Energetics of small electron acceleration episodes in the solar corona from radio noise storm observations
- On the Impulsive Heating of Quiet Solar Corona
- How Turbulent is the Magnetically Closed Corona?
- Magnetic field line twisting by photospheric vortices: energy storage and release
- Transition region contribution to AIA observations in the context of coronal heating
- Nanoflare Diagnostics from Magnetohydrodynamic Heating Profiles
- Remote Sensing of Coronal Forces During a Solar Prominence Eruption