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      Structural Invariance of Sunspot Umbrae Over the Solar Cycle: 1993-2004

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          Abstract

          Measurements of maximum magnetic flux, minimum intensity, and size are presented for 12 967 sunspot umbrae detected on the NASA/NSO spectromagnetograms between 1993 and 2004 to study umbral structure and strength during the solar cycle. The umbrae are selected using an automated thresholding technique. Measured umbral intensities are first corrected for a confirming observation of umbral limb-darkening. Log-normal fits to the observed size distribution confirm that the size spectrum shape does not vary with time. The intensity-magnetic flux relationship is found to be steady over the solar cycle. The dependence of umbral size on the magnetic flux and minimum intensity are also independent of cycle phase and give linear and quadratic relations, respectively. While the large sample size does show a low amplitude oscillation in the mean minimum intensity and maximum magnetic flux correlated with the solar cycle, this can be explained in terms of variations in the mean umbral size. These size variations, however, are small and do not substantiate a meaningful change in the size spectrum of the umbrae generated by the Sun. Thus, in contrast to previous reports, the observations suggest the equilibrium structure, as testified by the invariant size-magnetic field relationship, as well as the mean size (i.e. strength) of sunspot umbrae do not significantly depend on solar cycle phase.

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          Pan troglodytes

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            Bright rings around sunspots

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              Author and article information

              Journal
              11 December 2009
              2010-08-31
              Article
              10.1007/s11207-009-9493-8
              0912.2370
              7c8ba9da-f383-4fa7-ab7b-97535b2a5818

              http://arxiv.org/licenses/nonexclusive-distrib/1.0/

              History
              Custom metadata
              Solar Phys.262:19-33,2010
              17 pages, 6 figures. Published in Solar Physics
              astro-ph.SR

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