FORMATION OF SOLAR PROMINENCES BY PHOTOSPHERIC SHEARING MOTIONS

被引:66
作者
CHOE, GS [1 ]
LEE, LC [1 ]
机构
[1] UNIV ALASKA, DEPT PHYS, FAIRBANKS, AK 99775 USA
关键词
D O I
10.1007/BF00151917
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
A numerical simulation is performed to investigate the prominence formation a magnetic arcade by photospheric shearing motions. A two-and-a-half-dimensional magnetohydrodynamic (MHD) code is used, in which the gravitational force, radiative cooling, thermal conduction and a simplified form of coronal heating are included. It is found that a footpoint shear induces an expansion of the magnetic arcade and cooling of the plasma in it. Simultaneously the denser material from the lower part of the arcade is pulled up by the expanding field lines. A local enhancement of radiative cooling is thus effected, which leads to the onset of thermal instability and the condensation of coronal plasma. The condensed material grows vertically to form a sheet-like structure making dips on field lines, leading to the formation of the Kippenhahn-Schluter type prominence. The mass of the prominence is found to be supplied not only by the condensation of the material in the vicinity but also by the siphon-type upflows. The upward growth of the vertical sheet-structure of the prominence is saturated at a certain stage and the newly condensed material is found to slide down from above the prominence along magnetic field lines. This drainage of material leads to the formation of an arc-shaped cavity of low density and low pressure around the prominence. The problem of force and heat balance is addressed and the prominence is found to be not in a static equilibrium but in a dynamic interaction with its environment.
引用
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页码:291 / 329
页数:39
相关论文
共 59 条
[1]  
AMARI T, 1991, ASTRON ASTROPHYS, V241, P604
[2]   CONDENSATION MODES IN SHEARED MAGNETIC-FIELDS [J].
AN, CH .
ASTROPHYSICAL JOURNAL, 1986, 304 (01) :532-541
[3]  
AN CH, 1988, SOL PHYS, V115, P81, DOI 10.1007/BF00146231
[4]   NUMERICAL-SIMULATION OF MASS INJECTION FOR THE FORMATION OF PROMINENCE MAGNETIC-FIELD CONFIGURATIONS .2. SYMMETRIC INJECTION [J].
AN, CH ;
BAO, JJ ;
WU, ST ;
SUESS, ST .
SOLAR PHYSICS, 1988, 115 (01) :93-106
[5]  
AN CH, 1985, ASTROPHYS J, V297, P409
[6]   VECTOR MAGNETIC-FIELDS IN PROMINENCES .3. HEID3 STOKES PROFILE ANALYSIS FOR QUIESCENT AND ERUPTIVE PROMINENCES [J].
ATHAY, RG ;
QUERFELD, CW ;
SMARTT, RN ;
DEGL'INNOCENTI, EL ;
BOMMIER, V .
SOLAR PHYSICS, 1983, 89 (01) :3-30
[7]   THE SUNS MAGNETIC FIELD, 1952-1954 [J].
BABCOCK, HW ;
BABCOCK, HD .
ASTROPHYSICAL JOURNAL, 1955, 121 (02) :349-&
[8]   ALTERNATING DIRECTION IMPLICIT METHODS FOR PARABOLIC EQUATIONS WITH A MIXED DERIVATIVE [J].
BEAM, RM ;
WARMING, RF .
SIAM JOURNAL ON SCIENTIFIC AND STATISTICAL COMPUTING, 1980, 1 (01) :131-159
[9]   CORONAL TEMPERATURE-MEASUREMENTS NEAR A HELMET STRUCTURE BASE AT THE 1973 SOLAR ECLIPSE [J].
BESSEY, RJ ;
LIEBENBERG, DH .
SOLAR PHYSICS, 1984, 94 (02) :239-247
[10]   MAGNETIC ARCADE EVOLUTION AND INSTABILITY [J].
BISKAMP, D ;
WELTER, H .
SOLAR PHYSICS, 1989, 120 (01) :49-77