论文标题

通过周期性的波动稳定恒星风的稳定

Stabilization of the astropause by periodic fluctuations of the stellar wind

论文作者

Korolkov, S. D., Izmodenov, V. V.

论文摘要

本文的主要目的是探讨为什么观察许多天文席(或情节气泡)表现出非常稳定且平稳的天体结构 - 分离恒星和星际风的切向不连续性 - 而理论和数值模拟都表明,切线障碍表明,由于众所周知的不稳定性是由于众所周知的,kelvin -kelvin -khelvin -khellloltz(Khelvin -khellelvin -khellloltz)(Khelvin -khellelvin -khellloltz)(Khelvin -khellloltz)(Khelvin -khellloltz)(Khelvin -khellmoltz)(Khelvin -khellmoltz(Khellelvin -khellloltz)。在磁场可以稳定恒星之前,它已经被识别出来。在本文中,我们探讨了另一种减少天线的K-H不稳定性的机制。这种机制是恒星风动态压力的周期性变化。恒星风参数的波动是非常期望的。例如,尽管太阳风波动也较短,但太阳具有11年的全球活动周期。我们进行了参数数值研究,并证明K-H不稳定性的发展取决于无量纲参数$χ$,这是恒星风终端速度和星际流速速度的比率。参数$χ$越大,由K-H不稳定引起的波动越大。已经表明,K-H的不稳定性是对流,与先前的线性分析一致。证明了恒星风引导中的周期性波动对鸟根的稳定。结果表明,对于太阳风,当恒星参数变化的周期约为1 - 4年时,最有效的稳定性。在11年的太阳周期中,稳定效应较弱。

The main goal of the paper is to explore why observations of many astrospheres (or circumstellar bubbles) show quite stable and smooth structures of astropauses - the tangential discontinuities separating the stellar and interstellar winds, - while both theory and numerical simulations suggest that tangential discontinuities are unstable due to well known Kelvin-Helmholtz (K-H) instability. It was recognized before that magnetic fields may stabilize the astropauses. In this paper, we explore another mechanism to reduce the K-H instability of the astropauses. This mechanism is a periodic change of the stellar wind dynamic pressure. Fluctuations of the stellar wind parameters are quite expected. For example, the Sun has an 11-year cycle of global activity although there are also shorter periods of the solar wind fluctuations. We performed the parametric numerical study and demonstrate that the development of the K-H instability depends on the dimensionless parameter $χ$ which is the ratio of the stellar wind terminal speed and interstellar flow speed. The larger the parameter $χ$, the larger the fluctuations caused by the K-H instability. It has been shown that the K-H instability is convective which agrees with the previous linear analysis. The stabilization of the astropause by the periodic fluctuations in the stellar wind lead is demonstrated. It is shown that for the solar wind the most effective stabilization occurs when the period of stellar parameter change is about 1-4 years. For the eleven year solar cycle, the stabilization effect is weaker.

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