MAGNETIC UNTWISTING IN SOLAR JETS THAT GO INTO THE OUTER CORONA IN POLAR CORONAL HOLES

被引:58
作者
Moore, Ronald L. [1 ,2 ]
Sterling, Alphonse C. [1 ]
Falconer, David A. [1 ,2 ]
机构
[1] Marshall Space Flight Ctr, Heliophys & Planetary Sci Off, Huntsville, AL 35812 USA
[2] Univ Alabama, Ctr Space Plasma & Aeron Res, Huntsville, AL 35899 USA
关键词
solar wind; Sun: activity; Sun: chromosphere; Sun: corona; Sun: magnetic fields; X-RAY JETS; EXTREME-ULTRAVIOLET; ALFVENIC WAVES; II SPICULES; BLOWOUT JETS; HINODE; TELESCOPE; WIND; REGION; ENERGY;
D O I
10.1088/0004-637X/806/1/11
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We study 14 large solar jets observed in polar coronal holes. In EUV movies from the Solar Dynamics Observatory/Atmospheric Imaging Assembly (AIA), each jet appears similar to most X-ray jets and EUV jets that erupt in coronal holes; but each is exceptional in that it goes higher than most, so high that it is observed in the outer corona beyond 2.2 R-Sun in images from the Solar and Heliospheric Observatory/Large Angle Spectroscopic Coronagraph (LASCO)/C2 coronagraph. From AIA He II 304 angstrom movies and LASCO/C2 running-difference images of these high-reaching jets, we find: (1) the front of the jet transits the corona below 2.2 RSun at a speed typically several times the sound speed; (2) each jet displays an exceptionally large amount of spin as it erupts; (3) in the outer corona, most of the jets display measureable swaying and bending of a few degrees in amplitude; in three jets the swaying is discernibly oscillatory with a period of order 1 hr. These characteristics suggest that the driver in these jets is a magnetic-untwisting wave that is basically a large-amplitude (i.e., nonlinear) torsional Alfven wave that is put into the reconnected open field in the jet by interchange reconnection as the jet erupts. From the measured spinning and swaying, we estimate that the magnetic-untwisting wave loses most of its energy in the inner corona below 2.2 RSun. We point out that the torsional waves observed in Type-II spicules might dissipate in the corona in the same way as the magnetic-untwisting waves in our big jets, and thereby power much of the coronal heating in coronal holes.
引用
收藏
页数:20
相关论文
共 54 条
[1]   A SMALL-SCALE ERUPTION LEADING TO A BLOWOUT MACROSPICULE JET IN AN ON-DISK CORONAL HOLE [J].
Adams, Mitzi ;
Sterling, Alphonse C. ;
Moore, Ronald L. ;
Gary, G. Allen .
ASTROPHYSICAL JOURNAL, 2014, 783 (01)
[2]  
Allen C. W., 1973, Astrophysical Quantities, V3rd
[3]   The large angle spectroscopic coronagraph (LASCO) [J].
Brueckner, GE ;
Howard, RA ;
Koomen, MJ ;
Korendyke, CM ;
Michels, DJ ;
Moses, JD ;
Socker, DG ;
Dere, KP ;
Lamy, PL ;
Llebaria, A ;
Bout, MV ;
Schwenn, R ;
Simnett, GM ;
Bedford, DK ;
Eyles, CJ .
SOLAR PHYSICS, 1995, 162 (1-2) :357-402
[4]   H alpha surges and X-ray jets in AR 7260 [J].
Canfield, RC ;
Reardon, KP ;
Leka, KD ;
Shibata, K ;
Yokoyama, T ;
Shimojo, M .
ASTROPHYSICAL JOURNAL, 1996, 464 (02) :1016-1029
[5]   The kinematics of an untwisting solar jet in a polar coronal hole observed by SDO/AIA [J].
Chen, Hua-Dong ;
Zhang, Jun ;
Ma, Su-Li .
RESEARCH IN ASTRONOMY AND ASTROPHYSICS, 2012, 12 (05) :573-583
[6]   Evidence for Alfven waves in solar x-ray jets [J].
Cirtain, J. W. ;
Golub, L. ;
Lundquist, L. ;
van Ballegooijen, A. ;
Savcheva, A. ;
Shimojo, M. ;
DeLuca, E. ;
Tsuneta, S. ;
Sakao, T. ;
Reeves, K. ;
Weber, M. ;
Kano, R. ;
Narukage, N. ;
Shibasaki, K. .
SCIENCE, 2007, 318 (5856) :1580-1582
[7]   The EUV imaging spectrometer for Hinode [J].
Culhane, J. L. ;
Harra, L. K. ;
James, A. M. ;
Al-Janabi, K. ;
Bradley, L. J. ;
Chaudry, R. A. ;
Rees, K. ;
Tandy, J. A. ;
Thomas, P. ;
Whillock, M. C. R. ;
Winter, B. ;
Doschek, G. A. ;
Korendyke, C. M. ;
Brown, C. M. ;
Myers, S. ;
Mariska, J. ;
Seely, J. ;
Lang, J. ;
Kent, B. J. ;
Shaughnessy, B. M. ;
Young, P. R. ;
Simnett, G. M. ;
Castelli, C. M. ;
Mahmoud, S. ;
Mapson-Menard, H. ;
Probyn, B. J. ;
Thomas, R. J. ;
Davila, J. ;
Dere, K. ;
Windt, D. ;
Shea, J. ;
Hagood, R. ;
Moye, R. ;
Hara, H. ;
Watanabe, T. ;
Matsuzaki, K. ;
Kosugi, T. ;
Hansteen, V. ;
Wikstol, O. .
SOLAR PHYSICS, 2007, 243 (01) :19-61
[8]   Explosive Events: Swirling Transition Region Jets [J].
Curdt, W. ;
Tian, H. ;
Kamio, S. .
SOLAR PHYSICS, 2012, 280 (02) :417-424
[9]   Chromospheric Alfvenic waves strong enough to power the solar wind [J].
De Pontieu, B. ;
McIntosh, S. W. ;
Carlsson, M. ;
Hansteen, V. H. ;
Tarbell, T. D. ;
Schrijver, C. J. ;
Title, A. M. ;
Shine, R. A. ;
Tsuneta, S. ;
Katsukawa, Y. ;
Ichimoto, K. ;
Suematsu, Y. ;
Shimizu, T. ;
Nagata, S. .
SCIENCE, 2007, 318 (5856) :1574-1577
[10]  
De Pontieu B, 2012, ASTROPHYS J LETT, V752, DOI [10.1088/2041-8205/752/1/L12, 10.1088/2041-8205/752/1/L12L12]