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Streamer Evaporation

机译:流光蒸发

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摘要

Streamer evaporation is the consequence of heating in ideal MAD models because plasma is weakly contained by the magnetic field. Heating causes inflation, opening of field lines, and release of solar wind. It was discovered in simulations and, due to the absence of loss mechanisms, the ultimate end point is the complete evaporation of the streamer. Of course streamers do not behave in this way because of losses by thermal conduction and radiation. Heating is also expected to depend on ambient conditions. We use a global MAD model with thermal conduction to examine the effect of changing the heating scale height. We also extend an analytic model of streamers developed by Pneuman (1968) to show that steady streamers are unable to contain plasma for temperatures near the cusp greater than approx 2 * 10~6 K.
机译:在理想的MAD模型中,流光蒸发是加热的结果,因为等离子体几乎不受磁场的约束。加热会导致膨胀,磁力线打开和太阳风释放。它是在模拟中发现的,由于没有损失机制,最终的终点是拖缆的完全蒸发。当然,由于热传导和辐射造成的损失,拖缆不会以这种方式工作。加热也取决于环境条件。我们使用具有热传导的全局MAD模型来检查更改加热标尺高度的影响。我们还扩展了由Pneuman(1968)开发的拖缆的分析模型,显示出在接近尖顶的温度大于约2 * 10〜6 K时,稳定的拖缆无法容纳血浆。

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