THE EMERGENCE OF A TWISTED FLUX TUBE INTO THE SOLAR ATMOSPHERE: SUNSPOT ROTATIONS AND THE FORMATION OF A CORONAL FLUX ROPE

被引:151
作者
Fan, Y. [1 ]
机构
[1] Natl Ctr Atmospher Res, ESSL, HAO, Boulder, CO 80307 USA
关键词
Sun: activity; Sun: coronal mass ejections; Sun: flares; Sun: magnetic fields; sunspots; RADIATION MAGNETOHYDRODYNAMICS CODE; 2 SPACE DIMENSIONS; MAGNETIC-FLUX; CONVECTIVE INSTABILITY; ASTROPHYSICAL FLOWS; HELICITY; FIELD; ALGORITHMS; ERUPTION; ZEUS-2D;
D O I
10.1088/0004-637X/697/2/1529
中图分类号
P1 [天文学];
学科分类号
070403 [天体物理学];
摘要
We present a three-dimensional simulation of the dynamic emergence of a twisted magnetic flux tube from the top layer of the solar convection zone into the solar atmosphere and corona. It is found that after a brief initial stage of flux emergence during which the two polarities of the bipolar region become separated and the tubes intersecting the photosphere become vertical, significant rotational motion sets in within each polarity. The rotational motions of the two polarities are found to twist up the inner field lines of the emerged fields such that they change their orientation into an inverse configuration (i.e., pointing from the negative polarity to the positive polarity over the neutral line). As a result, a flux rope with sigmoid-shaped, dipped core fields forms in the corona, and the center of the flux rope rises in the corona with increasing velocity as the twisting of the flux rope footpoints continues. The rotational motion in the two polarities is a result of propagation of nonlinear torsional Alfven waves along the flux tube, which transports significant twist from the tube's interior portion toward its expanded coronal portion. This is a basic process whereby twisted flux ropes are developed in the corona with increasing twist and magnetic energy, leading up to solar eruptions.
引用
收藏
页码:1529 / 1542
页数:14
相关论文
共 28 条
[1]
INSTABILITY BY MAGNETIC BUOYANCY [J].
ACHESON, DJ .
SOLAR PHYSICS, 1979, 62 (01) :23-50
[2]
Emergence of magnetic flux from the convection zone into the corona [J].
Archontis, V ;
Moreno-Insertis, F ;
Galsgaard, K ;
Hood, AW ;
O'Shea, E .
ASTRONOMY & ASTROPHYSICS, 2004, 426 (03) :1047-1063
[3]
Eruption of magnetic flux ropes during flux emergence [J].
Archontis, V. ;
Torok, T. .
ASTRONOMY & ASTROPHYSICS, 2008, 492 (02) :L35-L38
[4]
THE TOPOLOGICAL PROPERTIES OF MAGNETIC HELICITY [J].
BERGER, MA ;
FIELD, GB .
JOURNAL OF FLUID MECHANICS, 1984, 147 (OCT) :133-148
[5]
Observations of rotating sunspots from TRACE [J].
Brown, DS ;
Nightingale, RW ;
Alexander, D ;
Schrijver, CJ ;
Metcalf, TR ;
Shine, RA ;
Title, AM ;
Wolfson, CJ .
SOLAR PHYSICS, 2003, 216 (1-2) :79-108
[6]
Magnetic helicity generation by solar differential rotation [J].
DeVore, CR .
ASTROPHYSICAL JOURNAL, 2000, 539 (02) :944-953
[7]
The emergence of a twisted Ω-tube into the solar atmosphere [J].
Fan, Y .
ASTROPHYSICAL JOURNAL, 2001, 554 (01) :L111-L114
[8]
FINN J, 1985, COMMENT PLASMA PHYS, V26, P111
[9]
The helical kink instability of isolated, twisted magnetic flux tubes [J].
Linton, MG ;
Longcope, DW ;
Fisher, GH .
ASTROPHYSICAL JOURNAL, 1996, 469 (02) :954-963
[10]
Dynamics of a thin twisted flux tube [J].
Longcope, DW ;
Klapper, I .
ASTROPHYSICAL JOURNAL, 1997, 488 (01) :443-453