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An analysis of Alfvén radius based on sunspot number from 1749 to today

机译:根据太阳黑子阿尔芬半径的分析数量从1749年到今天

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The Solar Probe Plus mission now under construction will provide the first in situ measurements from inside the orbit of Mercury. The most critical part of that mission will be measurements from inside the Alfvén radius where the Alfvén speed exceeds the wind speed and the physics of the solar wind changes fundamentally due, in part, to the multidirectionality of wave propagation. In this region waves from both sunward and antisunward of the observation point can effect the local dynamics including the turbulent evolution, heating, and acceleration of the plasma. While the location of this point can change with solar wind conditions, we ask the question of whether there is a systematic dependence on the solar cycle that moves the average Alfvén radius to different locations depending upon solar activity. We show that the average Alfvén radius is correlated with the sunspot number and moves systematically from ~15 at solar minimum to 30 RS at solar maximum. The analysis shown here does not predict movement of the Alfvén radius during the recent protracted solar minimum. We project the average Alfvén radius backward and forward in time using the monthly sunspot record to attempt a better understanding of the historical record and predict the behavior of this point during the coming solar cycle.
机译:太阳探测器+任务目前建设将提供第一现场从水星轨道内的测量。最关键的使命的一部分测量从阿尔芬半径内阿尔芬速度超过了风速和物理的太阳风从根本上改变部分由于multidirectionality的波传播。朝着太阳和antisunward观察点可以影响局部动态包括动荡的进化、加热和加速等离子体。改变与太阳风条件,我们问是否有系统的问题依赖移动的太阳活动周期阿尔芬平均半径不同的地方这取决于太阳活动。阿尔芬平均半径是相关的太阳黑子数量和系统地从~ 15在太阳能最小30 RS太阳能最大。分析所示不预测的运动阿尔芬半径在最近旷日持久太阳能最低。向后和向前半径使用每月的太阳黑子尝试更好的记录的历史记录和理解预测期间的行为这一点太阳活动周期。

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