论文标题

太阳电晕中alfvén波的通量管依赖性传播

Flux-tube-dependent propagation of Alfvén waves in the solar corona

论文作者

Sishtla, Chaitanya Prasad, Pomoell, Jens, Kilpua, Emilia, Good, Simon, Daei, Farhad, Palmroth, Minna

论文摘要

Alfvén波湍流已成为加速太阳风的重要加热机制。这种湍流加热的产生取决于反向传播的Alfvén波的存在和随后的相互作用。这要求我们了解太阳风中Alfvén波的繁殖和演变,以便对湍流加热和太阳风参数之间的关系有一种理解。我们的目的是研究太阳风在电晕底部注入单色单频率Alfvén波的响应,以实现各种磁通管几何形状。我们使用绝热状态方程使用了理想的磁流失动力学(MHD)模型。通过扰动横向磁场和速度成分,将Alfvén泵波注入了安静的太阳风中。由于参数衰减不稳定性(PDI)的发展,发现Alfvén波反射。进一步的研究表明,在低频率和磁通管几何形状下有效反射抑制了PDI。

Alfvén-wave turbulence has emerged as an important heating mechanism to accelerate the solar wind. The generation of this turbulent heating is dependent on the presence and subsequent interaction of counter-propagating alfvén waves. This requires us to understand the propagation and evolution of alfvén waves in the solar wind in order to develop an understanding of the relationship between turbulent heating and solar-wind parameters. We aim to study the response of the solar wind upon injecting monochromatic single-frequency alfvén waves at the base of the corona for various magnetic flux-tube geometries. We used an ideal magnetohydrodynamic (MHD) model using an adiabatic equation of state. An Alfvén pump wave was injected into the quiet solar wind by perturbing the transverse magnetic field and velocity components. Alfvén waves were found to be reflected due to the development of the parametric decay instability (PDI). Further investigation revealed that the PDI was suppressed both by efficient reflections at low frequencies as well as magnetic flux-tube geometries.

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