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Detection of three-minute oscillations in full-disk Lyα emission during a solar flare

机译:在太阳耀斑期间检测全盘Lyα发射中的三分钟振荡

摘要

In this Letter we report the detection of chromospheric 3-minute oscillations in disk-integrated EUV irradiance observations during a solar flare. A wavelet analysis of detrended Lyα (from GOES/EUVS) and Lyman continuum (from Solar Dynamics Observatory (SDO)/EVE) emission from the 2011 February 15 X-class flare (SOL2011-02-15T01:56) revealed a ~3 minute period present during the flare's main phase. The formation temperature of this emission locates this radiation at the flare's chromospheric footpoints, and similar behavior is found in the SDO/Atmospheric Imaging Assembly 1600 and 1700 Å channels, which are dominated by chromospheric continuum. The implication is that the chromosphere responds dynamically at its acoustic cutoff frequency to an impulsive injection of energy. Since the 3-minute period was not found at hard X-ray (HXR) energies (50–100 keV) in Reuven Ramaty High Energy Solar Spectroscopic Imager data we can state that this 3-minute oscillation does not depend on the rate of energization of non-thermal electrons. However, a second period of 120 s found in both HXR and chromospheric lightcurves is consistent with episodic electron energization on 2-minute timescales. Our finding on the 3-minute oscillation suggests that chromospheric mechanical energy should be included in the flare energy budget, and the fluctuations in the Lyα line may influence the composition and dynamics of planetary atmospheres during periods of high activity.
机译:在这封信中,我们报告了太阳耀斑期间在圆盘积分的EUV辐照度观测中探测到了色球层3分钟的振荡。对2011年2月15日X级耀斑(SOL2011-02-15T01:56)发出的去趋势化的Lyα(来自GOES / EUVS)和Lyman连续谱(来自太阳动力学天文台(SDO)/ EVE)的小波分析显示,大约需要3分钟在火炬的主要阶段存在的时期。该辐射的形成温度将辐射定位在耀斑的色球足点,并且在SDO /大气成像组件1600和1700Å通道中也发现了类似的行为,这些通道以色球连续体为主。这意味着色球在其声截止频率下动态响应能量的脉冲注入。由于在鲁汶拉玛迪高能太阳光谱成像仪数据中的硬X射线(HXR)能量(50–100 keV)上未找到3分钟的时间,因此我们可以说,这3分钟的振荡并不取决于通电的速率非热电子。但是,在HXR和色球光学曲线中都发现了120 s的第二个周期与在2分钟的时间尺度上的间歇性电子激励相一致。我们对3分钟振荡的发现表明,在耀斑能量预算中应包含色球机械能,而Lyα线的波动可能会影响活跃期期间行星大气的组成和动力学。

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