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首页> 外文期刊>Astronomy and astrophysics >“TNOs are Cool”: A survey of the trans-Neptunian region - VI. Herschel/PACS observations and thermal modeling of 19 classical Kuiper belt objects
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“TNOs are Cool”: A survey of the trans-Neptunian region - VI. Herschel/PACS observations and thermal modeling of 19 classical Kuiper belt objects

机译:“ TNO很酷”:跨海王星地区的调查-VI。 Herschel / PACS观测和19个经典柯伊伯带天体的热模型

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摘要

Context. Trans-Neptunian objects (TNO) represent the leftovers of the formation of the solar system. Their physical properties provide constraints to the models of formation and evolution of the various dynamical classes of objects in the outer solar system. Aims. Based on a sample of 19 classical TNOs we determine radiometric sizes, geometric albedos and beaming parameters. Our sample is composed of both dynamically hot and cold classicals. We study the correlations of diameter and albedo of these two subsamples with each other and with orbital parameters, spectral slopes and colors. Methods. We have done three-band photometric observations with Herschel/PACS and we use a consistent method for data reduction and aperture photometry of this sample to obtain monochromatic flux densities at 70.0, 100.0 and 160.0??μm. Additionally, we use Spitzer/MIPS flux densities at 23.68 and 71.42??μm when available, and we present new Spitzer flux densities of eight targets. We derive diameters and albedos with the near-Earth asteroid thermal model (NEATM). As auxiliary data we use reexamined absolute visual magnitudes from the literature and data bases, part of which have been obtained by ground based programs in support of our Herschel key program. Results. We have determined for the first time radiometric sizes and albedos of eight classical TNOs, and refined previous size and albedo estimates or limits of 11 other classicals. The new size estimates of 2002 MS4 and 120347 Salacia indicate that they are among the 10 largest TNOs known. Our new results confirm the recent findings that there are very diverse albedos among the classical TNOs and that cold classicals possess a high average albedo (0.17?±?0.04). Diameters of classical TNOs strongly correlate with orbital inclination in our sample. We also determine the bulk densities of six binary TNOs.
机译:上下文。海王星天体(TNO)代表了太阳系形成的剩余物。它们的物理特性对外部太阳系中各种动态物体类别的形成和演化模型提供了约束。目的基于19个经典TNO的样本,我们确定辐射尺寸,几何反照率和波束参数。我们的样本包括动态的经典和经典的经典。我们研究了这两个子样本的直径和反照率的相互关系以及轨道参数,光谱斜率和颜色的相互关系。方法。我们已经用Herschel / PACS进行了三波段光度观测,并使用一致的方法对该样品进行数据缩减和孔径光度测定,以获得70.0、100.0和160.0?μm的单色通量密度。此外,如果可用,我们使用23.68和71.42?m的Spitzer / MIPS磁通密度,并给出了八个目标的新Spitzer磁通密度。我们使用近地小行星热模型(NEATM)得出直径和反照率。作为辅助数据,我们使用来自文献和数据库的重新检查的绝对视觉强度,其中一些是通过地面程序获得的,以支持我们的Herschel关键程序。结果。我们首次确定了8个经典TNO的辐射尺寸和反照率,并完善了先前的尺寸和反照率估计值或其他11个经典的限值。对2002 MS4和120347 Salacia的新大小估计表明,它们是已知的10个最大TNO之一。我们的新结果证实了最近的发现:经典的TNO之间存在非常不同的反照率,而寒冷的经典拥有较高的平均反照率(0.17?±?0.04)。经典TNO的直径与我们样品中的轨道倾角密切相关。我们还确定了六个二元TNO的堆积密度。

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