Latitude Variation of Helicity in Solar Active Regions
Широтная вариация спиральности в солнечных активных областях
2004-10-25
SCID: 54.1/qjn7e6s5
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Solar Flare Telescopeconvective motioncurrent helicitysolar active regionsvector magnetograms
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Abstract (AI)
We studied the current helicity of 230 active regions on the Sun during the period of 1992–2001. Vector magnetograms used were obtained with the Solar Flare Telescope, located at the Mitaka campus of the National Astronomical Observatory. The latitude distribution of helicity shows a negative slope; namely, the regions in the northern (southern) hemisphere tend to show a negative (positive) helicity, respectively, in agreement with previous studies. The scatter seen in the helicity is significantly larger than expected from the measurement errors, implying that the process generating the helicity is of random, turbulent nature. Therefore, convective motion must play an essential role in generating the helicity of active regions.
Key Findings
1
Current helicity was analyzed for 230 solar active regions observed from 1992 to 2001 using Solar Flare Telescope vector magnetograms.
2
Helicity varies systematically with latitude: northern-hemisphere regions tend toward negative helicity, while southern-hemisphere regions tend toward positive helicity.
3
The findings imply that convective motions play an essential role in generating active-region helicity.
4
The observed helicity scatter significantly exceeds measurement-error expectations, indicating a random, turbulent helicity-generation process.
Research Object
Solar active regions observed during 1992–2001
Research Subject
Latitude-dependent current helicity distribution and its random, turbulent generation by convective motion
Publication Details
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2004-10-25
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