论文标题

Wendelstein Mt. 41p/Tuttle-Giacobini-Kresak的Wendelstein成像在2017年围场期间

Mt. Wendelstein imaging of comet 41P/Tuttle-Giacobini-Kresak during the 2017 perihelion arc

论文作者

Boehnhardt, Hermann, Riffeser, Arno, Ries, Christoph, Schmidt, Michael, Hopp, Ulrich

论文摘要

41p/tuttle-giacobini-kresak(41p)是一家木星家族彗星(41p),在大约100年内发现了三个发现,在阳光周围的短周期轨道上,周围的圆锥体靠近地球距离。 2017年41p的幻影为彗星提供了近距离的可见性。 Wendelstein天文台的2 M望远镜的为期四个月的成像运动旨在表征彗星的灰尘活动和核特性。使用内部昏迷通量的新分析方法,我们得出了一个小于600 m的小平均等效半径,该细胞核的不寻常的身体轴比大于两个。核旋转轴是根据昏迷结构的几何外观确定的,图像在图像中得到了增强。一个长期的昏迷风扇是由一个延伸的区域在缓慢旋转的核上高纬度地区产生的,而分离的喷气机起源于核上狭窄的低纬度活性区域。尽管由于对彗星的未知相功能校正而难以准确量化41p的尘埃活性,但表明陡峭的径向轮廓随着与太阳的距离增加而掉落。颜色和通量轮廓为彗星内部昏迷中的灰尘破碎提供了证据。一个奇异的爆发事件在昏迷中造成了各种尘埃结构。爆发来自核上的一个延伸区域,是由于核上的滑坡或从挥发性冰的地下袋中释放出的材料。

Comet 41P/Tuttle-Giacobini-Kresak (41P), a Jupiter family comet with three discoveries over about 100 years, is in a short-periodic orbit around the Sun with the perihelion close to the Earth distance. The 2017 apparition of 41P offered a long-lasting visibility of the comet at a close distance to Earth. The four month-long imaging campaign with the 2 m telescope at the Mount Wendelstein Observatory was aimed at characterizing dust activity and nucleus properties of the comet. Using a new analysis method of the inner coma flux, we derived a small mean equivalent radius of about 600 m for the nucleus with an unusual body axes ratio that is higher than two. The nucleus rotation axis was determined from the geometric appearance of coma structures, which were enhanced in the images. A long-lasting coma fan was produced by an extended region at high latitudes on the slowly rotating nucleus, whereas isolated jets originated from narrow, low latitude active regions on the nucleus. The dust activity of 41P, despite being difficult to quantify exactly because of an unknown phase function correction for the comet, indicates a steep radial profile that falls off with an increasing distance from the Sun. Colors and flux profiles provide evidence for dust fragmentation in the inner coma of the comet. A singular outburst event created various dust structures in the coma. The outburst came from an extended region on the nucleus and was due to either a landslide on the nucleus or a sudden material release from a subsurface pocket of volatile ice.

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