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Spitzer Space Telescope observations of bilobate comet 8P/Tuttle

机译:双瓣彗星8P / Tuttle的 Spitzer 太空望远镜观测

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Context. Comet 8P/Tuttle is a nearly isotropic comet whose physical properties are poorly known and might be different from those of ecliptic comets owing to their different origin. Two independent observations have shown that 8P/Tuttle has a bilobate nucleus. Aims. Our goal is to determine the physical properties of the nucleus (size, shape, thermal inertia, and albedo) and coma (water and dust) of 8P/Tuttle. Methods. We observed the inner coma of 8P/Tuttle with the infrared spectrograph and the infrared camera of the Spitzer Space Telescope. We obtained one spectrum (5–40 μ m) on 2 November 2007 and a set of 19 images at 24 μ m on 22–23 June 2008 sampling the rotational period of the nucleus. The data were interpreted using thermal models for the nucleus and the dust coma, and we considered two possible shape models of the nucleus derived from Hubble Space Telescope visible and Arecibo radar observations. Results. We favor a model for the nucleus shape that is composed of two contact spheres with respective radii of 2.7 ± 0.1 km and 1.1 ± 0.1 km and a pole orientation with RA = 285 ± 12° and Dec = +20 ± 5°. The thermal inertia of the nucleus lies in the range 0–100 J K~(?1)m~(?2)s~(?1∕2)and the R -band geometric albedo is 0.042 ± 0.008. The water production rate amounts to 1.1 ± 0.2 × 10~(28)molecules s~(?1)at 1.6 AU from the Sun pre-perihelion, which corresponds to an active fraction of ≈9%. At the same distance, the ?fρ quantity amounts to 310 ± 34 cm, and it reaches 325 ± 36 cm at 2.2 AU post-perihelion. The dust grain temperature is estimated to be 258 ± 10 K, which is 37 K higher than the thermal equilibrium temperature at 1.6 AU. This indicates that the dust grains that contribute to the thermal infrared flux have a typical size of ≈10 μ m. The dust spectrum exhibits broad emission around 10 μ m (1.5 σ confidence level) and 18 μ m (5 σ confidence level) that we attribute to amorphous pyroxene.
机译:上下文。 8P / Tuttle彗星是一种几乎各向同性的彗星,其物理特性鲜为人知,由于其起源不同,可能与黄道彗星的物理特性有所不同。两项独立的观察表明,8P / Tuttle具有双叶核。目的我们的目标是确定8P / Tuttle的原子核的物理属性(大小,形状,热惯性和反照率)和彗形象差(水和灰尘)。方法。我们用斯皮策太空望远镜的红外光谱仪和红外热像仪观察了8P / Tuttle的内部昏迷。我们在2007年11月2日获得了一个光谱(5–40μm),并在2008年6月22–23日获得了19张在24μm处的图像,采样了原子核的旋转周期。使用原子核和尘埃昏迷的热模型解释了数据,我们考虑了两种可能的核形状形状模型,它们来自哈勃太空望远镜可见光和阿雷西博雷达观测。结果。我们赞成一个由两个接触球体组成的模型,该接触球体的半径分别为2.7±0.1 km和1.1±0.1 km,极点取向为RA = 285±12°和Dec = +20±5°。原子核的热惯性在0–100 J K〜(?1)m〜(?2)s〜(?1∕2)范围内,R波段几何反照率为0.042±0.008。自太阳前近日点起1.6 AU,产水率达1.1±0.2×10〜(28)分子s〜(?1),相当于≈9%的活性分数。在相同的距离上,Δfρ的量为310±34 cm,在2.2 AU后扰动后达到325±36 cm。尘粒温度估计为258±10 K,比1.6 AU下的热平衡温度高37K。这表明有助于热红外通量的尘埃颗粒的典型尺寸约为10μm。尘埃光谱在10μm(1.5σ置信度)和18μm(5σ置信度)附近表现出宽广的发射,这归因于无定形辉石。

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