Bibcode
                                    
                            Yelles-Chaouche, L.; Kuckein, C.; Martínez-Pillet, V.; Moreno-Insertis, F.
    Referencia bibliográfica
                                    The Astrophysical Journal, Volume 748, Issue 1, article id. 23 (2012).
Fecha de publicación:
    
                        3
            
                        2012
            
  Revista
                                    
                            Número de citas
                                    31
                            Número de citas referidas
                                    25
                            Descripción
                                    The three-dimensional structure of an active region filament is studied
using nonlinear force-free field extrapolations based on simultaneous
observations at a photospheric and a chromospheric height. To that end,
we used the Si I 10827 Å line and the He I 10830 Å triplet
obtained with the Tenerife Infrared Polarimeter at the Vacuum Tower
Telescope (Tenerife). The two extrapolations have been carried out
independently from each other and their respective spatial domains
overlap in a considerable height range. This opens up new possibilities
for diagnostics in addition to the usual ones obtained through a single
extrapolation from, typically, a photospheric layer. Among those
possibilities, this method allows the determination of an average
formation height of the He I 10830 Å signal of ≈2 Mm above the
surface of the Sun. It allows, as well, a cross-check of the obtained
three-dimensional magnetic structures to verify a possible deviation
from the force-free condition, especially at the photosphere. The
extrapolations yield a filament formed by a twisted flux rope whose axis
is located at about 1.4 Mm above the solar surface. The twisted field
lines make slightly more than one turn along the filament within our
field of view, which results in 0.055 turns Mm-1. The
convex part of the field lines (as seen from the solar surface)
constitutes dips where the plasma can naturally be supported. The
obtained three-dimensional magnetic structure of the filament depends on
the choice of the observed horizontal magnetic field as determined from
the 180° solution of the azimuth. We derive a method to check for
the correctness of the selected 180° ambiguity solution.
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