论文标题

太阳电晕中的双重紫外线

Twin extreme ultraviolet waves in the solar corona

论文作者

Zheng, Ruisheng, Wang, Bing, Zhang, Liang, Chen, Yao, Erdelyi, Robertus

论文摘要

太阳极端紫外线(EUV)波是壮观的传播干扰,具有太阳电晕的环形形状的EUV增强。这些EUV波带有有关冠状动脉磁化等离子体的关键信息,该血浆可以通过全球太阳能冠状动脉磁磁性来阐明难以捉摸的物理参数(例如磁场强度)。 EUV波与广泛的太阳大气爆发密切相关,从剧烈耀斑和冠状质量弹出(CME)到较不活化的等离子体射流或迷你丝射击。但是,EUV波的物理性质和驱动机制仍然存在争议。在这里,我们报告了在一次爆发中形成的双电波波(TEW)的独特发现,从两个不同的角度进行了观察。在所有较早的研究中,单个喷发最多与单个EUV波相关。新发现的TEW渴望重新探讨我们对冠状波的基本形成机制的理论理解。发现了两种不同的TEW场景。在第一种情况下,这两个波与细丝喷发和前体喷射分开相关,而在另一种情况下,这两个波连续与细丝喷发相关。因此,我们将这些杰出的场景标记为“兄弟tews”和“相同的Tews”。此外,我们还建议,两组不同的冠状环的冲动性横向膨胀对于在一次喷发中形成TEWS至关重要。

Solar extreme ultraviolet (EUV) waves are spectacular propagating disturbances with EUV enhancements in annular shapes in the solar corona. These EUV waves carry critical information about the coronal magnetised plasma that can shed light on the elusive physical parameters (e.g. the magnetic field strength) by global solar coronal magneto-seismology. EUV waves are closely associated with a wide range of solar atmospheric eruptions, from violent flares and coronal mass ejections (CMEs) to less energetic plasma jets or mini-filament eruptions. However, the physical nature and driving mechanism of EUV waves is still controversial. Here, we report the unique discovery of twin EUV waves (TEWs) that were formed in a single eruption with observations from two different perspectives. In all earlier studies, a single eruption was associated at most with a single EUV wave. The newly found TEWs urge to re-visit our theoretical understanding about the underlying formation mechanism(s) of coronal EUV waves. Two distinct scenarios of TEWs were found. In the first scenario, the two waves were separately associated with a filament eruption and a precursor jet, while in another scenario the two waves were successively associated with a filament eruption. Hence, we label these distinguished scenarios as "fraternal TEWs" and "identical TEWs", respectively. Further, we also suggest that impulsive lateral expansions of two distinct groups of coronal loops are critical to the formation of TEWs in a single eruption.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源