首页> 外文期刊>The Astrophysical journal >PHYSICAL PROPERTIES OF POLAR CORONAL RAYS AND HOLES AS OBSERVED WITH THE SPARTAN 201-01 CORONAGRAPH
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PHYSICAL PROPERTIES OF POLAR CORONAL RAYS AND HOLES AS OBSERVED WITH THE SPARTAN 201-01 CORONAGRAPH

机译:从SPARTAN 201-01日冕仪观察到的极冠状射线和孔的物理性质

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摘要

Physical conditions and characteristics of polar coronal rays and polar coronal holes are derived from white-light coronal observations aboard the Spartan 201-01 spacecraft and the ground-based K-coronameter in Mauna Loa, Hawaii, on 1993 April 11-12. An array of polar rays extending from 1.16 to 5.0 solar radius was observed in both the north and south polar coronal hole regions. They appear as coherent structures at much higher altitudes than previously observed. Densities and scale height temperatures are estimated as a function of radial height for the holes and the rays. These profiles suggest that there is extended heating up to heights of 1.4-2.6 solar radius.
机译:极地日冕射线和极地日冕孔的物理条件和特征是从1993年4月11日至12日在夏威夷的莫纳罗亚(Mauna Loa)的Spartan 201-01航天器和地基K日冕仪上观察到的白光日冕观测得出的。在北极和南极日冕孔区域都观察到了从太阳半径1.16到5.0范围内的一系列极射线。它们在比以前观察到的高得多的高度上表现为连贯的结构。估计密度和水垢高度温度是孔和射线的径向高度的函数。这些曲线表明,加热范围扩大到太阳半径为1.4-2.6。

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