Solar Anti-Hale Bipolar Magnetic Regions: A Distinct Population with Systematic Properties
arXiv:2203.11898 · doi:10.3847/1538-4357/ac133b
Abstract
Besides their causal connection with long and short-term magnetic variability, solar bipolar magnetic regions are our chief source of insight into the location, size, and properties of large-scale toroidal magnetic structures in the solar interior. The great majority of these regions (~95%) follow a systematic east-west polarity orientation (Hale's law) that reverses in opposite hemispheres and across even and odd cycles. These regions also present a systematic north-south polarity orientation (Joy's law) that helps build the poloidal field that seeds the new cycle. Exceptions to Hale's law are rare and difficult to study due to their low numbers. Here, we present a statistical analysis of the inclination (tilt) with respect to the equator of Hale versus anti-Hale regions spanning four solar cycles, considering two complementary tilt definitions adopted in previous studies. Our results show that anti-Hale regions belong to a separate population than Hale regions, suggesting a different originating mechanism. However, we find that anti-Hale region tilts present similar systematic tilt properties and similar latitudinal distributions to Hale regions, implying a strong connection between the two. We see this as evidence that they belong to a common toroidal flux system. We speculate that anti-Hale regions originate from poloidal field sheared and strengthened on the spot after the emergence of Hale regions with very strong poloidal contribution. Thus, they are not in contradiction with the idea of largely coherent toroidal flux systems inside the solar interior.
References in corpus (4)
- Array Programming with NumPy
- Effects of the scatter in sunspot group tilt angles on the large-scale magnetic field at the solar surface
- Small-Scale and Global Dynamos and the Area and Flux Distributions of Active Regions, Sunspot Groups, and Sunspots: A Multi-Database Study
- Re-examining Sunspot Tilt Angle to Include Anti-Hale Statistics
Cited by in corpus (8)
- Towards a live homogeneous database of solar active regions based on SOHO/MDI and SDO/HMI synoptic magnetograms. I. Automatic detection and calibration
- Impact of Anomalous Active Regions on the Large-scale Magnetic Field of the Sun
- AutoTAB: Automatic Tracking Algorithm for Bipolar Magnetic Regions
- Predicting the Timing of the the Solar Cycle 25 Polar Field Reversal
- Synthetic solar cycle for active regions violating the Hale's polarity law
- Toward a live homogeneous database of solar active regions based on SOHO/MDI and SDO/HMI synoptic magnetograms.II.parameters for solar cycle variability
- Probing the variations in the timing of the Sun's polar magnetic field reversals through observations and surface flux transport simulations
- Solar active region scaling laws revisited