论文标题
振荡重新连接周期性的独立性从初始脉冲
The independence of oscillatory reconnection periodicity from the initial pulse
论文作者
论文摘要
振荡重新连接可以通过太阳大气中无处不在的MHD波和无处不在的无零点之间的相互作用表现出来,并以固有的周期性为特征。在当前的研究中,我们着重于振荡性重新连接周期与波脉冲的强度最初在热的冠状血浆中扰动零点。我们使用冥王星代码来解决2D磁性X点的完全压缩的电阻MHD方程。使用具有广泛幅度的波脉冲,我们将执行参数研究以获得周期的值,考虑到各向异性热传导的存在和不存在。在这两种情况下,我们发现所产生的时期与初始扰动的强度无关。与我们先前的研究一致,各向异性热传导的添加仅导致该时期的平均值增加。我们还考虑了不同类型的初始驱动器,并且获得了与前面提到的独立趋势相匹配的振荡期。因此,我们首次报告了初始化波脉冲的类型和强度之间的独立性与热冠状等离子体中振荡重新连接的产生时期之间的独立性。这使得振荡重新连接成为冠状动脉学背景下使用的有希望的机制。
Oscillatory reconnection can manifest through the interaction between the ubiquitous MHD waves and omnipresent null points in the solar atmosphere and is characterized by an inherent periodicity. In the current study, we focus on the relationship between the period of oscillatory reconnection and the strength of the wave pulse initially perturbing the null point, in a hot coronal plasma. We use the PLUTO code to solve the fully compressive, resistive MHD equations for a 2D magnetic X-point. Using wave pulses with a wide range of amplitudes, we perform a parameter study to obtain values for the period, considering the presence and absence of anisotropic thermal conduction separately. In both cases, we find that the resulting period is independent of the strength of the initial perturbation. The addition of anisotropic thermal conduction only leads to an increase in the mean value for the period, in agreement with our previous study. We also consider a different type of initial driver and we obtain an oscillation period matching the independent trend previously mentioned. Thus, we report for the first time on the independence between the type and strength of the initializing wave pulse and the resulting period of oscillatory reconnection in a hot coronal plasma. This makes oscillatory reconnection a promising mechanism to be used within the context of coronal seismology.