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An extensive survey of dayside diffuse aurora based on optical observations at Yellow River Station

机译:基于黄河站光学观测的日间弥散极光的广泛调查

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摘要

By using 7 years optical auroral observations obtained at Yellow River Station (magnetic latitude 76.24°N) at Ny-Alesund, Svalbard, we performed the first extensive survey for the dayside diffuse auroras (DDAs) and acquired observational results as follows. (1) The DDAs can be classified into two broad categories, i.e., unstructured and structured DDAs. The unstructured DDAs aremainly distributed inmorning and afternoon, but the structured DDAs predominantly occurred around the magnetic local noon (MLN). (2) The unstructured DDAs observed in morning and afternoon present obviously different properties. The afternoon ones are much stable and seldom show pulsating property. (3) The DDAs are more easily observed under geomagnetically quiet times. (4) The structured DDAsmainly showpatchy, stripy, and irregular forms and are often pulsating and drifting. The drifting directions are mostly westward (with speed ~5 km/s), but there are cases showing eastward or poleward drifting. (5) The stripy DDAs are exclusively observed near theMLN and,most importantly, their alignments are confirmed to be consistent with the direction of ionospheric convection near the MLN. (6) A new auroral form, called throat aurora, is found to be developed from the stripy DDAs. Based on the observational results and previous studies, we proposed our explanations to the DDAs. We suggest that the unstructured DDAs observed in the morning are extensions of the nightside diffuse aurora to the dayside, but that observed in the afternoon are predominantly caused by proton precipitations. The structured DDAs occurred near the MLN are caused by interactions of cold plasma structures, which are supposed to be originated from the ionospheric outflows or plasmaspheric drainage plumes, with hot electrons from the plasma sheet. We suppose that the cold plasma structures for producing the patchy DDAs are in lumpy and are more likely from the plasmaspheric drainage plumes. The cold plasma structure for producing the stripy DDAs should be in wedge like and is generated by conveying the cold plasmas from lower L-shell toward higher L-shell with magnetospheric convection, and that for producing the irregular DDAs is resulted from deforming the wedge-like structure by disturbance. The throat aurora is supposed to be projection of a newly opened flux of reconnection. In addition, we also found that structured DDAs correspond to structured electron precipitations in the ionosphere, which implies that the cold plasma structures in the magnetosphere are magnetically mapped to the ionosphere and act as a duct for producing the structured DDAs. We argue that we have presented some new observational results about DDA in this paper, which will be useful for fully understanding the DDAs.
机译:通过使用在斯瓦尔巴特群岛Ny-Alesund的黄河站(磁纬度76.24°N)获得的7年光学极光观测,我们对日间弥散极光(DDA)进行了首次广泛调查,并获得了以下观测结果。 (1)DDA可以分为两大类,即非结构化DDA和结构化DDA。非结构化DDAs主要分布在上午和下午,但结构化DDAs主要发生在局部磁午(MLN)附近。 (2)早晨和下午观察到的非结构化DDA具有明显不同的性质。下午的天气非常稳定,很少有脉动性。 (3)在地磁平静时期更容易观察到DDA。 (4)结构化的DDA主要表现为斑片状,条纹状和不规则形式,并且经常脉动和漂移。漂流方向大多是向西(速度约5 km / s),但也有向东或向极漂移的情况。 (5)条纹状DDA仅在MLN附近观察到,最重要的是,已确认它们的排列与MLN附近的电离层对流方向一致。 (6)从条纹DDA中发现了一种新的极光形式,称为喉头极光。根据观测结果和先前的研究,我们对DDA提出了解释。我们建议,早晨观察到的非结构化DDA是夜间弥散性极光向白天延伸,而下午观察到的则主要是质子沉淀所致。 MLN附近发生的结构化DDA是由冷等离子体结构与等离子体板的热电子相互作用引起的,该等离子体结构可能是由于电离层流出或等离子层排放羽流引起的。我们假设用于产生斑块状DDA的冷等离子体结构呈块状,更可能来自等离子层排放羽流。产生条状DDA的冷等离子体结构应呈楔形,是通过磁层对流将冷等离子体从较低的L壳向较高的L壳输送而产生的,而产生不规则DDA的冷等离子体结构是由楔形变形导致的。就像结构受干扰。喉头极光应该是重新打开的新通量的投影。此外,我们还发现结构化DDA与电离层中的结构化电子沉淀相对应,这意味着磁层中的冷等离子体结构被磁性映射到电离层并充当生产结构化DDA的​​管道。我们认为,我们在本文中提出了一些有关DDA的新观测结果,这对于充分理解DDA很有用。

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