HR: 08:45h
AN: SP31A-02 [Abstracts]
TI: High resolution magnetogram measurements of solar faculae
AU: * Berger, T E
EM: berger@lmsal.com
AF: Lockheed Martin Advanced Technology Center, O/ADBS B/252
3251 Hanover St., Palo Alto, Ca 94303 United States
AU: Rouppe van der Voort, L
EM: v.d.v.l.rouppe@astro.uio.no
AF: Institute of Theoretical Astrophysics, University of Oslo
P.O. Box 1029
Blindern, Oslo, Norway
AU: Lofdahl, M G
EM: mats@astro.su.se
AF: Institute for Solar Physics
Royal Swedish Academy of Sciences, Alba Nova University Center
SE-106 91, Stockholm, Sweden
AB:
We present new images of magnetic elements near the solar limb ("faculae") along with magnetogram measurements and contrast profiles. Imaging magnetogram observations were made of AR 10377 at μ = cosθ = 0.6 on 06-June-2003 using the
Swedish 1-m
Solar Telescope; the data are the highest spatial resolution
magnetogram measurements of faculae to date. Contrary to previous
lower resolution measurements, we find no correlation between
facular contrast and magnetic flux density at a given disk
position. Increasing magnetic flux density in a region implies an
increasing prevalence of micropores. Previous observations which
lacked sufficient spatial resolution to discern dark micropore
"floors" from bright facular walls find a strong non-linear
dependence of facular contrast on magnetic flux density, with
decreasing contrast beyond a certain flux density. We show instead
that the observed contrast of bright facular walls is independent
of magnetic flux density when properly segmented from dark
micropores. The observations are useful for examining the detailed
structure of faculae including the dark lanes found on the
disk-center side of many faculae (explained by several recent 3D
MHD numerical simulations). The average radial profile for 678
faculae segmented from the dataset is very nearly gaussian with a
FWHM radial extent of 265 km and an extended tail on the limbward
side, as predicted by current MHD simulations.
DE: 7524 Magnetic fields
DE: 7529 Photosphere
DE: 7538 Solar irradiance
SC: Solar Physics Division - AAS [SP]
MN: 2005 Joint Assembly