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KEY ISSUES OF THE SOLAR TRANSITION REGION TO BE ADRESSED BY THE SOLAR ORBITER

机译:太阳能轨道器解决了太阳过渡区域的关键问题

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The transition region is the thermal contact between the dense and cold chromosphere and the hot and tenuous corona. As such, the spectral emission lines formed in the region potentially contain information on the phenomena occurring in both. This diagnostic potential is increased since the transition region is geometrically quite small and since the radiative transfer is relatively simple for these lines. The transition region thus presents us with the possibility of making observations that can elucidate the still not understood energetics and dynamics of the corona and the chromosphere. On the other hand, the nearly discontinuous rise in temperature and the fact that plasma beta passes through β = 1 close to the transition region practically ensure that wave phenomena such as reflection and refraction will occur. It is also certain that time-dependent phenomena and the topology of the magnetic field are factors that contribute to the complications in unraveling the nature of the dynamics of these regions. There is a large contrast between network and internetwork emission throughout the outer layers of the Sun (indeed it is not certain that any material at coronal temperatures is in thermal contact with the internetwork at all), while at any given location the emission varies with time on several different time scales. In the internetwork there is, perhaps, general agreement that acoustic waves play an important role in powering the emission stemming from the upper chromosphere. In the network the acoustic power seems suppressed and in the upper regions of the Solar atmosphere magnetic phenomena, such as rapid reconnection or the dissipation of high frequency Alfven waves surely contribute to the heating. We will discuss the various phenomena expected in the transition region in the context of observations possible with the Solar Orbiter.
机译:过渡区域是致密和冷铬圈和炎热和脆弱的电晕之间的热接触。这样,在该区域中形成的光谱发射线可能包含关于两者中发生的现象的信息。由于过渡区域是几何上的,因此这种诊断电位增加,并且由于辐射传递对于这些线来说比较简单。因此,过渡区域向我们呈现了能够阐明仍未理解电晕和铬层的能量学和动态的观察的可能性。另一方面,温度几乎不连续的升高以及等离子体β通过β= 1的事实,靠近过渡区域,实际上可以确保将发生诸如反射和折射的波现象。还确定时间依赖的现象和磁场的拓扑是促使这些区域的动态性质的并发症的因素。网络和互联网排放之间存在大的对比度在阳光下的外层(实际上并不确定冠状温度的任何材料根本都与互联网热接触),而在任何给定的位置处发射随时间变化在几个不同的时间尺度上。在互联网中,可能的是,声波在从上铬层发出排放时发挥着重要作用的一般同意。在网络中,声学功率似乎被抑制,并且在太阳气氛磁性现象的上部区域中,例如快速重新连接或高频Alfven波的耗散肯定有助于加热。我们将在可能与太阳能轨道器的观察结果中讨论过渡区域预期的各种现象。

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