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Magnetic Properties of Metric Noise Storms Associated with Coronal Mass Ejections
引用本文:Ya-Yuan Wen,Jing-Xiu Wang and Yu-Zong Zhang National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100012,. Magnetic Properties of Metric Noise Storms Associated with Coronal Mass Ejections[J]. 中国天文和天体物理学报, 2007, 7(2): 265-280
作者姓名:Ya-Yuan Wen  Jing-Xiu Wang and Yu-Zong Zhang National Astronomical Observatories  Chinese Academy of Sciences  Beijing 100012  
作者单位:Ya-Yuan Wen,Jing-Xiu Wang and Yu-Zong Zhang National Astronomical Observatories,Chinese Academy of Sciences,Beijing 100012;
基金项目:国家自然科学基金;国家重点基础研究发展计划(973计划)
摘    要:Using Nancay Radioheliograph (NRH) imaging observations, combined with SOHO/Michelson Doppler Imager (MDI) magnetogram observations and coronal magnetic field extrapolation, we studied the magnetic nature of metric noise storms that are associated with coronal mass ejections (CMEs). Four events are selected: the events of 2000 July 14, 2001 April 26, 2002 August 16 and 2001 March 28. The identified noise storm sources cover or partially cover the active regions (ARs), but the centers of storm sources are offset from the ARs. Using extrapolated magnetic field lines, we find that the noise storm sources trace the boundary between the open and closed field lines. We demonstrate that the disappearance of noise storm source is followed by the appearance of the burst source. The burst sources spread on the solar disk and their distributions correspond to the extent of the CME in LASCO C2 field of view. All the SOHO/Extreme Ultraviolet Imaging Telescope (EIT) dimmings associ- ated with noise storm sources are located at the periphery of noise storms where the magnetic lines of force were previously closed and low-lying. When the closed field becomes partially or fully open, the basic configurations of noise storm sources are changed, then the noise storm sources are no longer observed. These observations provide the information that the variations of noise storms manifest the restructuring or reconfiguring of the coronal magnetic field.

关 键 词:Sun: corona—Sun: coronal mass ejection (CME)—Sun: radio radiation

Magnetic Properties of Metric Noise Storms Associated with Coronal Mass Ejections
Ya-Yuan Wen,Jing-Xiu Wang,Yu-Zong Zhang. Magnetic Properties of Metric Noise Storms Associated with Coronal Mass Ejections[J]. Chinese Journal of Astronomy and Astrophysics, 2007, 7(2): 265-280
Authors:Ya-Yuan Wen  Jing-Xiu Wang  Yu-Zong Zhang
Affiliation:National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100012
Abstract:Using Nan(c)ay Radioheliograph (NRH) imaging observations, combined with SOHO/Michelson Doppler Imager (MDI) magnetogram observations and coronal magnetic field extrapolation, we studied the magnetic nature of metric noise storms that are associated with coronal mass ejections (CMEs). Four events are selected the events of 2000 July 14,2001 April 26, 2002 August 16 and 2001 March 28. The identified noise storm sources cover or partially cover the active regions (ARs), but the centers of storm sources are offset from the ARs. Using extrapolated magnetic field lines, we find that the noise storm sources trace the boundary between the open and closed field lines. We demonstrate that the disappearance of noise storm source is followed by the appearance of the burst source. The burst sources spread on the solar disk and their distributions correspond to the extent of the CME in LASCO C2 field of view. All the SOHO/Extreme Ultraviolet Imaging Telescope (EIT) dimmings associated with noise storm sources are located at the periphery of noise storms where the magnetic lines of force were previously closed and low-lying. When the closed field becomes partially or fully open, the basic configurations of noise storm sources are changed, then the noise storm sources are no longer observed. These observations provide the information that the variations of noise storms manifest the restructuring or reconfiguring of the coronal magnetic field.
Keywords:Sun: corona - Sun: coronal mass ejection (CME) - Sun: radio radiation
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