Variation in sunspot properties between 1999 and 2011 as observed with the Tenerife Infrared Polarimeter
arXiv:1203.1444 · doi:10.1051/0004-6361/201118635
Abstract
We study the variation in the magnetic field strength and the umbral intensity of sunspots during the declining phase of the solar cycle no.23 and in the beginning of cycle no.24. We analyze a sample of 183 sunspots observed from 1999 until 2011 with the Tenerife Infrared Polarimeter at the German Vacuum Tower Telescope. The magnetic field strength is derived from the Zeeman splitting of the Stokes-V signal in one near-infrared spectral line, either Fe I 1564.8 nm, Fe I 1089.6 nm, or Si I 1082.7 nm. This avoids the effects of the unpolarized stray light from the field-free quiet Sun surroundings. The minimum umbral continuum intensity and umbral area are also measured. We find that there is a systematic trend for sunspots in the late stage of the solar cycle no.23 to be weaker, i.e., to have a smaller maximum magnetic field strength than those at the start of the cycle. The decrease in the field strength with time of about 94 G/yr is well beyond the statistical fluctuations that would be expected because of the larger number of sunspots close to cycle maximum (14 G/yr). In the same time interval, the continuum intensity of the umbra increases with a rate of 1.3 (+- 0.4)% of Ic/yr, while the umbral area does not show any trend above the statistical variance. Sunspots in the new cycle no.24 show higher field strengths and lower continuum intensities than those at the end of cycle no.23, interrupting the trend. Sunspots have an intrinsically weaker field strength and brighter umbrae at the late stages of solar cycles compared to their initial stages, without any significant change in their area. The abrupt increase in field strength in sunspots of the new cycle suggests that the cyclic variations are dominating over any long-term trend that continues across cycles. We find a slight decrease in field strength and an increase in intensity as a long-term trend across the cycles.
9 pages, 8 figures, accepted in A&A
References in corpus (8)
- Properties of sunspots in cycle 23: I. Dependence of brightness on sunspot size and cycle phase
- Magnetic properties of G-band bright points in a sunspot moat
- Relation between photospheric magnetic field and chromospheric emission
- Time Distributions of Large and Small Sunspot Groups Over Four Solar Cycles
- A 3-D sunspot model derived from an inversion of spectropolarimetric observations and its implications for the penumbral heating
- Evolution of sunspot properties during solar cycle 23
- Stray-light contamination and spatial deconvolution of slit-spectrograph observations
- Reversal-free CaIIH profiles: a challenge for solar chromosphere modeling in quiet inter-network
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