4.7 Article

OSCILLATIONS IN A SUNSPOT WITH LIGHT BRIDGES

期刊

ASTROPHYSICAL JOURNAL
卷 792, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/792/1/41

关键词

magnetohydrodynamics (MHD); Sun: atmosphere; Sun: chromosphere; Sun: oscillations; sunspots; waves

资金

  1. Marie Curie RadioSun project [PIRSES-GA-2011-295272]
  2. European Research Council under the SeismoSun Research Project [321141]
  3. Open Research Program of the Key Laboratory of Solar Activity of the National Astronomical Observatories of China [KLSA201312]
  4. Russian Foundation of Basic Research [13-02-00044]
  5. BK21 plus program through the National Research Foundation - Ministry of Education of Korea
  6. National Natural Science Foundation of China [40904047, 41174154, 41274176]
  7. Ministry of Education of China [20110131110058, NCET-11-0305]
  8. Provincial Natural Science Foundation of Shandong [JQ201212]
  9. China 973 program [2012CB825601]
  10. NSFC [41274178, 11373040, 11273030, 11221063]
  11. MOST Grant [2011CB811401]
  12. Science and Technology Facilities Council [ST/L000733/1, ST/I000720/1, ST/F00205X/1] Funding Source: researchfish
  13. UK Space Agency [ST/J001732/1] Funding Source: researchfish
  14. STFC [ST/L000733/1, ST/I000720/1, ST/F00205X/1] Funding Source: UKRI

向作者/读者索取更多资源

The Solar Optical Telescope on board Hinode observed a sunspot (AR 11836) with two light bridges (LBs) on 2013 August 31. We analyzed a two-hour Ca II H emission intensity data set and detected strong five-minute oscillation power on both LBs and in the inner penumbra. The time-distance plot reveals that the five-minute oscillation phase does not vary significantly along the thin bridge, indicating that the oscillations are likely to originate from underneath it. The slit taken along the central axis of the wide LB exhibits a standing wave feature. However, at the center of the wide bridge, the five-minute oscillation power is found to be stronger than at its sides. Moreover, the time-distance plot across the wide bridge exhibits a herringbone pattern that indicates a counter-stream of two running waves, which originated at the bridge's sides. Thus, the five-minute oscillations on the wide bridge also resemble the properties of running penumbral waves. The five-minute oscillations are suppressed in the umbra, while the three-minute oscillations occupy all three cores of the sunspot's umbra, separated by the LBs. The three-minute oscillations were found to be in phase at both sides of the LBs. This may indicate that either LBs do not affect umbral oscillations, or that umbral oscillations at different umbral cores share the same source. It also indicates that LBs are rather shallow objects situated in the upper part of the umbra. We found that umbral flashes (UFs) follow the life cycles of umbral oscillations with much larger amplitudes. They cannot propagate across LBs. UFs dominate the three-minute oscillation power within each core; however, they do not disrupt the phase of umbral oscillation.

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