SM32B-08
An Extensive Survey of Dayside Diffuse Aurora (DDA) Based on Optical Observations at Yellow River Station (YRS)
Wednesday, 16 December 2015: 12:06
2016 (Moscone West)
Han Desheng, Polar Research Institute of China, Shanghai, China
Abstract:
By using 7 years optical auroral observations obtained at Yellow River Station 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 2 broad categories, i.e., unstructured and structured DDAs. The unstructured DDAs are mainly distributed in morning 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 DDAs mainly show patchy, 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 the MLN 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 plasm structure for producing the stripy DDAs should be in wedge-like and are generated by conveying the cold plasmas from lower latitude towards higher latitude with magnetospheric convection, and that for producing the irregular DDAs are resulted from deforming the wedge-like structure by disturbance. The throat aurora is supposed to be projection of a newly-opened flux of reconnection.