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首页> 外文期刊>The Astrophysical journal >On Quasi-biennial Oscillations in Chromospheric Macrospicules and Their Potential Relation to the Global Solar Magnetic Field
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On Quasi-biennial Oscillations in Chromospheric Macrospicules and Their Potential Relation to the Global Solar Magnetic Field

机译:大气层大粒子的准双年度振荡及其与全球太阳磁场的潜在关系

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This study aims to provide further evidence for the potential influence of the global solar magnetic field on localized chromospheric jets, the macrospicules (MS). To find a connection between the long-term variation of properties of MS and other solar activity proxies, including, e.g., the temporal variation of the frequency shift of solar global oscillations, sunspot area, etc., a database overarching seven years of observations was compiled. This database contains 362 MS, based on observations at the 30.4 nm of the Atmospheric Imaging Assembly on board the Solar Dynamics Observatory. Three of the five investigated physical properties of MS show a clear long-term temporal variation after smoothing the raw data. Wavelet analysis of the temporal variation of maximum length, maximum area, and average velocity is carried out. The results reveal a strong pattern of periodicities at around 2 years (also referred to as quasi-biennial oscillations—QBOs). A comparison with solar activity proxies that also possess the properties of QBOs provides some interesting features: the minima and maxima of QBOs of MS properties occur at around the same epoch as the minima and maxima of these activity proxies. For most of the time span investigated, the oscillations are out of phase. This out-of-phase behavior was also corroborated by a cross-correlation analysis. These results suggest that the physical processes that generate and drive the long-term evolution of the global solar activity proxies may be coupled to the short-term local physical processes driving the macrospicules, and, therefore modulate the properties of local dynamics.
机译:这项研究旨在为全球太阳磁场对局部色球层大粒子(MS)的潜在影响提供进一步的证据。为了找到MS的特性的长期变化与其他太阳活动代理之间的联系,包括例如太阳全局振荡,黑子面积等的频移的时间变化,建立了一个涵盖七年观测数据的数据库。编译。该数据库包含362 MS,基于在太阳动力学天文台上大气成像组件在30.4 nm处的观测结果。在对原始数据进行平滑处理之后,研究的五个物理性能中的三个显示出明显的长期时间变化。对最大长度,最大面积和平均速度的时间变化进行小波分析。结果显示了在2年左右的强周期性模式(也称为准双年度振荡-QBO)。与也具有QBOs性质的太阳活动代理进行比较提供了一些有趣的特征:MS属性的QBO的最小值和最大值与这些活动代理的最小值和最大值发生在大约相同的时期。在研究的大部分时间范围内,振荡都是异相的。互相关分析也证实了这种异相行为。这些结果表明,产生和驱动全球太阳活动代理的长期演变的物理过程可能与驱动宏观粒子的短期局部物理过程耦合,因此调节了局部动力学的性质。

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