FAST MAGNETIC RECONNECTION IN THE SOLAR CHROMOSPHERE MEDIATED BY THE PLASMOID INSTABILITY

被引:113
|
作者
Ni, Lei [1 ,2 ]
Kliem, Bernhard [1 ,3 ]
Lin, Jun [1 ]
Wu, Ning [4 ]
机构
[1] Chinese Acad Sci, Yunnan Observ, Kunming 650011, Peoples R China
[2] Chinese Acad Sci, Natl Astron Observ, Key Lab Solar Act, Beijing 100012, Peoples R China
[3] Univ Potsdam, Inst Phys & Astron, D-14476 Potsdam, Germany
[4] Yunnan Normal Univ, Sch Tourism & Geog, Kunming 650031, Peoples R China
来源
ASTROPHYSICAL JOURNAL | 2015年 / 799卷 / 01期
关键词
magnetic reconnection; magnetohydrodynamics (MHD); radiation: dynamics; Sun: activity; Sun: chromosphere; EJECTION CURRENT SHEETS; PARTIALLY-IONIZED-GASES; ELLERMAN BOMBS; NUMERICAL SIMULATIONS; FINE-STRUCTURE; ANEMONE JETS; SPECTRAL-ANALYSIS; FLARE LOOP; H-ALPHA; ATMOSPHERE;
D O I
10.1088/0004-637X/799/1/79
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Magnetic reconnection in the partially ionized solar chromosphere is studied in 2.5 dimensional magnetohydrodynamic simulations including radiative cooling and ambipolar diffusion. A Harris current sheet with and without a guide field is considered. Characteristic values of the parameters in the middle chromosphere imply a high magnetic Reynolds number of similar to 10(6)-10(7) in the present simulations. Fast magnetic reconnection then develops as a consequence of the plasmoid instability without the need to invoke anomalous resistivity enhancements. Multiple levels of the instability are followed as it cascades to smaller scales, which approach the ion inertial length. The reconnection rate, normalized to the asymptotic values of magnetic field and Alfven velocity in the inflow region, reaches values in the range similar to 0.01-0.03 throughout the cascading plasmoid formation and for zero as well as for strong guide field. The outflow velocity reaches approximate to 40 km s(-1). Slow-mode shocks extend from the X-points, heating the plasmoids up to similar to 8 x 10(4) K. In the case of zero guide field, the inclusion of both ambipolar diffusion and radiative cooling causes a rapid thinning of the current sheet (down to similar to 30 m) and early formation of secondary islands. Both of these processes have very little effect on the plasmoid instability for a strong guide field. The reconnection rates, temperature enhancements, and upward outflow velocities from the vertical current sheet correspond well to their characteristic values in chromospheric jets.
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页数:16
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