HR: 0800h
AN: GC31B-0345 [Abstracts]
TI: Do Photospheric Brightness Structures Outside Magnetic Flux Tubes Contribute to Solar Luminosity Variation?
AU: * Bernasconi, P N
EM: pietro.bernasconi@jhuapl.edu
AF: JHU Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD 20723-6099,
United States
AU: Foukal, P
EM: PVFoukal@Comcast.net
AF: Heliophysics, Inc., 192 Willow Road, Nahant, MA 01908, United States
AB:
Variations in total solar irradiance (TSI) correlate well with changes in projected area of photospheric magnetic
flux tubes associated with spots, faculae and network. This correlation does not, however, rule out possible TSI
contributions from photospheric brightness inhomogeneities located outside flux tubes, and spatially correlated
with them. Previous reconstructions report 10% amplitude agreement with radiometry that seems to rule out
significant extra-flux tube contributions. We show that, while these reconstructions are insensitive to behavior of
near- limb facular contrast, their sensitivity to contrasts on the disc is relatively high. Given this sensitivity,
previously used observational and theoretical approximations to wide-band facular contrast are too uncertain to
support claims of 10% reconstruction accuracy. Recent measurements with the Solar Bolometric Imager (SBI)
provide the first observational support for the relatively high wide-band, disc-center contrasts required to produce
10% rms agreement. Longer-term bolometric imaging to measure areas and bolometric contrasts
homogeneously will be required to determine whether the systematic TSI residuals we see are caused mainly by
uncertainties in sunspot contrasts, or by extra-flux tube brightness structures due to bright spot rings or convective
stirring.
UR: http://sd-www.jhuapl.edu/SBI/
DE: 7524 Magnetic fields
DE: 7529 Photosphere
DE: 7537 Solar and stellar variability (1650)
DE: 7538 Solar irradiance
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting