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Origin of coronal shocks without mass ejections

  • A. Shanmugaraju
  • , Y. J. Moon
  • , K. S. Cho
  • , M. Dryer
  • , S. Umapathy

Research output: Contribution to journalReview articlepeer-review

15 Citations (Scopus)

Abstract

We present an analysis of all the events (around 400) of coronal shocks for which the shock-associated metric type Us were observed by many spectrographs during the period April 1997-December 2000. The main objective of this analysis is to give evidence for the type Us related to only flare-blast waves, and thus to find out whether there are any type II-associated coronal shocks without mass ejections. By carefully analyzing the data from multi-wavelength observations (Radio, GOES X-ray, Hα, SOHO/LASCO and SOHO/EIT-EUV data), we have identified only 30 events for which there were actually no reports of CMEs. Then from the analysis of the LASCO and EIT running difference images, we found that there are some shocks (nearly 40%, 12/30) which might be associated with weak and narrow mass ejections. These weak and narrow ejections were not reported earlier. For the remaining 60% events (18/30), there are no mass ejections seen in SOHO/LASCO. But all of them are associated with flares and EIT brightenings. Pre-assuming that these type IIs are related to the flares, and from those flare locations of these 18 cases, 16 events are found to occur within the central region of the solar disk (longitude ≤45°). In this case, the weak CMEs originating from this region are unlikely to be detected by SOHO/LASCO due to low scattering. The remaining two events occurred beyond this longitudinal limit for which any mass ejections would have been detected if they were present. For both these events, though there are weak eruption features (EIT dimming and loop displacement) in the EIT images, no mass ejection was seen in LASCO for one event, and a CME appeared very late for the other event. While these two cases may imply that the coronal shocks can be produced without any mass ejections, we cannot deny the strong relationship between type IIs and CMEs.

Original languageEnglish
Pages (from-to)117-127
Number of pages11
JournalSolar Physics
Volume233
Issue number1
DOIs
Publication statusPublished - Jan 2006

Bibliographical note

Funding Information:
We thank the referee for his/her useful comments. We kindly acknowledge the various online catalogs (CMEs, flares, Type IIs) and to their open data policy. Y.-J. Moon and K.-S.Cho have been supported by the MOST grants (M1-0104-00-0059 and M1-0407-00-0001) of the Korean government. M.D. has been partially supported by a U.S. DoD/USAF/UPOS project (via the University of Alaska at Fairbanks, Geophysical Institute) and by a NASA/LWS contract to Exploration Physics International, Inc. The CME catalog we have used is generated and maintained by the Center for Solar Physics and Space Weather, The Catholic University of America in cooperation with the Naval Research Laboratory and NASA. SOHO is a project of international cooperation between ESA and NASA. Part of this work was conducted during AS’s visit to Korea Astronomy and Space Science Institute (KASI), Korea. Y.-J. Moon is supported by the Korea Research Foundation (KRF-2005-070-c00059) of the Korean Government.

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