论文标题

在λ>2.2μm处的跨纳普对象的组成研究

Compositional study of trans-Neptunian objects at λ > 2.2 μm

论文作者

Fernández-Valenzuela, E., Pinilla-Alonso, N., Stansberry, J., Emery, J. P., Perkins, W., Van Laerhoven, C., Gladman, B. J., Fraser, W., Cruikshank, D., Lellouch, E., Müller, T. G., Grundy, W. M., Trilling, D., Fernandez, Y., Dalle-Ore, C.

论文摘要

使用来自Spitzer空间望远镜上红外阵列摄像头的数据,我们提出了超过2.2μm的100个跨北纳普对象(TNOS)样品的光度观测值。为了研究TNOS的表面组成,这些观察结果是用两个以3.6和4.5μm为中心的宽带过滤器收集的,这些观测值太微弱,无法获得光谱测量。以此目的,我们开发了一种方法来识别在TNO表面上发现的不同材料。在我们的样品中,我们检测到具有与少量水相一致的颜色的物体,并且能够区分主要由复杂有机物和无定形硅酸盐组成的表面。我们发现,我们的样本中有86%具有与一定量的水冰一致的特征,而最常见的组成(73%的物体)是水冰,无定形硅酸盐和复杂有机物的混合物。我们的样品中有23%可能包括其他冰,例如一氧化碳,二氧化碳,甲烷或甲醇。此外,只有小物体似乎具有由硅酸盐主导的表面。该方法是识别复杂有机物的独特工具,并获得了极度微弱对象的表面组成。同样,在使用詹姆斯·韦伯太空望远镜来区分跨纳普尼亚人群中的群体时,这种方法将是有益的。

Using data from the Infrared Array Camera on the Spitzer Space Telescope, we present photometric observations of a sample of 100 trans-Neptunian objects (TNOs) beyond 2.2 μm. These observations, collected with two broad-band filters centered at 3.6 and 4.5 μm, were done in order to study the surface composition of TNOs, which are too faint to obtain spectroscopic measurements. With this aim, we have developed a method for the identification of different materials that are found on the surfaces of TNOs. In our sample, we detected objects with colors that are consistent with the presence of small amounts of water and were able to distinguish between surfaces that are predominately composed of complex organics and amorphous silicates. We found that 86% of our sample have characteristics that are consistent with a certain amount of water ice, and the most common composition (73% of the objects) is a mixture of water ice, amorphous silicates, and complex organics. 23% of our sample may include other ices such as carbon monoxide, carbon dioxide, methane or methanol. Additionally, only small objects seem to have surfaces dominated by silicates. This method is a unique tool for the identification of complex organics and to obtain the surface composition of extremely faint objects. Also, this method will be beneficial when using the James Webb Space Telescope for differentiating groups within the trans-Neptunian population.

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