Parameters of the Magnetic Flux inside Coronal Holes
arXiv:0908.2460 · doi:10.1007/s11207-009-9433-7
Abstract
Parameters of magnetic flux distribution inside low-latitude coronal holes (CHs) were analyzed. A statistical study of 44 CHs based on Solar and Heliospheric Observatory (SOHO)/MDI full disk magnetograms and SOHO/EIT 284Åimages showed that the density of the net magnetic flux, , does not correlate with the associated solar wind speeds, . Both the area and net flux of CHs correlate with the solar wind speed and the corresponding spatial Pearson correlation coefficients are 0.75 and 0.71, respectively. A possible explanation for the low correlation between and is proposed. The observed non-correlation might be rooted in the structural complexity of the magnetic field. As a measure of complexity of the magnetic field, the filling factor, , was calculated as a function of spatial scales. In CHs, was found to be nearly constant at scales above 2 Mm, which indicates a monofractal structural organization and smooth temporal evolution. The magnitude of the filling factor is 0.04 from the Hinode SOT/SP data and 0.07 from the MDI/HR data. The Hinode data show that at scales smaller than 2 Mm, the filling factor decreases rapidly, which means a mutlifractal structure and highly intermittent, burst-like energy release regime. The absence of necessary complexity in CH magnetic fields at scales above 2 Mm seems to be the most plausible reason why the net magnetic flux density does not seem to be related to the solar wind speed: the energy release dynamics, needed for solar wind acceleration, appears to occur at small scales below 1 Mm.
6 figures, approximately 23 pages. Accepted in Solar Physics
References in corpus (7)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Jets in coronal holes: Hinode observations and 3D computer modelling
- The Number Of Magnetic Null Points In The Quiet Sun Corona
- Similarities and Differences between Coronal Holes and the Quiet Sun: Are Loop Statistics the Key?
- Solar Wind Forecasting with Coronal Holes
- Links between magnetic fields and plasma flows in a coronal hole
- Intermittency in the photosphere and corona above an active region
Cited by in corpus (17)
- Can the Solar Wind be Driven by Magnetic Reconnection in the Sun's Magnetic Carpet?
- Low-Latitude Coronal Holes at the Minimum of the 23rd Solar Cycle
- Real-time solar wind prediction based on SDO/AIA coronal hole data
- Segmentation of coronal holes in solar disk images with a convolutional neural network
- The Dependence of the Peak Velocity of High-Speed Solar Wind Streams as Measured in the Ecliptic by ACE and the STEREO satellites on the Area and Co-Latitude of their Solar Source Coronal Holes
- A statistical study of long-term evolution of coronal hole properties as observed by SDO
- Automated identification of coronal holes from synoptic EUV maps
- The Observational Uncertainty of Coronal Hole Boundaries in Automated Detection Schemes
- Short-term evolution of coronal hole boundaries
- How the area of solar coronal holes affects the properties of high-speed solar wind streams near Earth -- An analytical model
- Machine-learning approach to identification of coronal holes in solar disk images and synoptic maps
- On the Dependency between the Peak Velocity of High-speed Solar Wind Streams near Earth and the Area of Their Solar Source Coronal Holes
- Chromospheric signatures of small-scale flux emergence as observed with NST and Hinode instruments
- Magnetic filed dynamics and varying plasma emission in large coronal loops
- Influence of coronal hole morphology on the solar wind speed at Earth
- Estimates of Densities and Filling Factors from a Cooling Time Analysis of Solar Microflares Observed with RHESSI
- What Determines the Brightness of the Magnetically Open Solar Corona?: Insights from Three-dimensional Radiative Magnetohydrodynamic Simulations and Observations