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Propagation and Damping of a Localized Impulsive Longitudinal Perturbation in Coronal Loops

机译:在冠状环中的局部脉冲纵向扰动的传播和阻尼

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We use linear analysis to simulate the evolution of a coronal loop in response to a localized impulsive event. The disturbance is modeled by injecting a narrow Gaussian velocity pulse near one footpoint of a loop in equilibrium. Three different damping mechanisms, namely viscosity, thermal conduction, and optically thin radiation, are included in the loop calculations. We consider homogeneous and gravitationally stratified, isothermal loops of varying length (50≤L≤400 Mm) and temperature (2≤T≤10 MK). We find that a localized pulse can effectively excite slow magnetoacoustic waves that propagate up along the loop. The amplitudes of the oscillations increase with decreasing loop temperature and increasing loop length and size of the pulse width. At T≥4 MK, the waves are dissipated by the combined effects of viscosity and thermal conduction, whereas at temperatures of 2 MK, or lower, wave dissipation is governed by radiative cooling. We predict periods in the range of 4.6 – 41.6 minutes. The wave periods remain unaltered by variations of the pulse size, decrease with the loop temperature, and increase almost linearly with the loop length. In addition, gravitational stratification results in a small reduction of the periods and amplification of the waves as they propagate up along the loop. Keywords Sun - Coronal oscillations - Slow MHD waves This paper is dedicated to the memory of César A. Mendoza-Briceño, who died tragically at the age of 46. Apart from leading the Venezuelan research group in Solar Physics, one of his major contributions has been to create a local school in this field.
机译:我们使用线性分析来模拟冠状环对局部冲动事件的响应。通过在平衡的环路的一个脚点附近注入一个狭窄的高斯速度脉冲来模拟干扰。回路计算中包括三种不同的阻尼机制,即粘度,热传导和光学上的薄辐射。我们考虑长度(50≤L≤400Mm)和温度(2≤T≤10MK)变化的均质和重力分层等温回路。我们发现,局部脉冲可以有效地激发沿环向上传播的慢磁声波。振荡的幅度随着环路温度的降低以及环路长度和脉冲宽度尺寸的增加而增加。在T≥4MK时,由于粘度和热传导的共同作用而消散了波,而在2 MK或更低的温度下,波的消散由辐射冷却控制。我们预计周期为4.6 – 41.6分钟。波周期保持不变,不受脉冲大小变化的影响,随周期温度的降低而减小,而随环路长度的增加几乎呈线性增加。此外,重力分层会导致周期略微减少,并且随着波浪沿环路向上传播,波浪会放大。关键词太阳-日冕振荡-MHD慢波本文致力于纪念塞萨尔·A·门多萨·布赖斯尼奥(CésarA.Mendoza-Briceño),他在46岁时不幸去世。除领导委内瑞拉太阳物理研究小组外,他的主要贡献之一是曾在该领域创建当地学校。

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