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The Color Distribution in the Edgeworth-Kuiper Belt*

机译:Edgeworth-Kuiper带中的颜色分布*

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In 1997 we began the Meudon Multicolor Survey of Outer Solar System Objects with the aim of collecting a large and homogeneous set of color data for trans-Neptunian objects (TNOs) and Centaurs. Here we present our latest B-V, V-R, and R-I color measurements obtained with the CFH12K mosaic camera of the 3.6 m Canada-France-Hawaii Telescope. With the colors of 30 objects reported in this work, we have a combined sample of 52 B-R color measurements for eight Centaurs, 22 classical TNOs, 13 Plutinos, eight scattered objects, and one object of unidentified dynamical class. This is the largest single and homogeneous data set published to date, and it is large enough to search for compositional structures, interrelations between dynamical classes of objects, and correlations with physical and orbital parameters. The color-color diagrams show that all the classes of objects share the same wide color diversity. No significant correlations are seen for the whole population of TNOs and Centaurs, or for individual subpopulations, except for the classical objects. Indeed, we found a significant and strong correlation of the colors of classical TNOs with inclination, eccentricity, and perihelion, but nothing with semimajor axis and absolute magnitude. Most of these results are common to previous works and do not seem to be due to sampling bias. Moreover, a strong correlation with mean excitation velocity [VK(e2 + i2)1/2] points toward a space weathering or impact origin for the color diversity. However, thorough modeling of the collisional/dynamical environment in the Edgeworth-Kuiper belt needs to be done in order to confirm this scenario. We found also that the classical TNOs are made up of a superposition of two distinct populations: the dynamically cold classical TNOs (red colors, low i, small sizes) and the dynamically hot classical TNOs (diverse colors, moderate and high i, larger sizes). Furthermore, the latter population displays a strong correlation between color and mean excitation velocity. The dynamically cold classical TNOs may be primordial, while the dynamically hot classical TNOs, whose surface colors may be the result of space weathering and/or impact processes, have possibly been injected from the inner regions of the disk. Our specific observation strategy to repeat color measurements with no rotation artifacts have permitted us to highlight a few objects suspected to have true compositional and/or texture variation on their surfaces. These TNOs are 1998 HK151, 1999 DF9, 1999 OY3, 2000 GP183, 2000 OK67, and 2001 KA77, and they should be prime targets for further observations in order to study and confirm the color variation with the rotation. Finally, our survey has also highlighted some peculiar objects, such as 1998 SN165, whose colors and dynamical properties put this object in a new dynamical class distinct from the classical TNOs, its previously assigned dynamical class.
机译:1997年,我们开始对外部太阳系天体进行Meudon多色调查,目的是收集大量的,均匀的海王星天体(TNO)和半人马座颜色数据。在这里,我们展示了最新的B-V,V-R和R-I颜色测量结果,这些测量结果是使用3.6 m加拿大-法国-夏威夷望远镜的CFH12K镶嵌式摄像机获得的。根据这项工作中报告的30个物体的颜色,我们结合了52个B-R颜色测量的样本,其中包括八个半人马座,22个经典TNO,13个Plutinos,八个分散的物体和一个不确定的动态等级的物体。这是迄今为止发布的最大的单一和同类数据集,它足以搜索组成结构,物体动态类之间的相互关系以及与物理和轨道参数的相关性。彩色图表表明,所有类别的对象都具有相同的广泛的颜色多样性。除了经典对象外,对于TNO和Centaurs的整个种群或单个亚群,均未发现显着相关性。确实,我们发现经典TNO的颜色与倾斜度,偏心率和近日点之间存在显着且强烈的相关性,而与半长轴和绝对大小无关。这些结果大多数是以前的工作所共有的,似乎不是由于采样偏差引起的。此外,与平均激发速度[VK(e2 + i2)1/2]的强相关性指向空间风化或影响颜色多样性的起源。但是,为了确认这种情况,需要对Edgeworth-Kuiper带中的碰撞/动力学环境进行彻底的建模。我们还发现,经典TNO由两个不同种群的叠加组成:动态冷的经典TNO(红色,低i,小尺寸)和动态热的经典TNO(多样化的颜色,中高i,大尺寸) )。此外,后一组在颜色和平均激发速度之间显示出很强的相关性。动态冷的经典TNO可能是原始的,而动态热的经典TNO的表面颜色可能是空间风化和/或撞击过程的结果,可能已从磁盘的内部区域注入了。我们的特殊观察策略是在没有旋转伪影的情况下重复进行颜色测量,从而使我们能够突出显示一些怀疑在其表面上具有真实成分和/或纹理变化的对象。这些TNO是1998 HK151、1999 DF9、1999 OY3、2000 GP183、2000 OK67和2001 KA77,它们应该是进一步观察的主要目标,以便研究和确认旋转时的颜色变化。最后,我们的调查还突出显示了一些特殊的对象,例如1998 SN165,其颜色和动力学特性使该对象成为不同于传统TNO(先前分配的动力学类)的新的动力学类。

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