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海王星外天体UB313比冥王星大。

The trans-neptunian object UB313 is larger than Pluto.

作者信息

Bertoldi F, Altenhoff W, Weiss A, Menten K M, Thum C

机构信息

Argelander Institute for Astronomy, University of Bonn, Auf dem Hügel 71, D-53121 Bonn, Germany.

出版信息

Nature. 2006 Feb 2;439(7076):563-4. doi: 10.1038/nature04494.

Abstract

The most distant known object in the Solar System, 2003 UB313 (97 au from the Sun), was recently discovered near its aphelion. Its high eccentricity and inclination to the ecliptic plane, along with its perihelion near the orbit of Neptune, identify it as a member of the 'scattered disk'. This disk of bodies probably originates in the Kuiper belt objects, which orbit near the ecliptic plane in circular orbits between 30 and 50 au, and may include Pluto as a member. The optical brightness of 2003 UB313, if adjusted to Pluto's distance, is greater than that of Pluto, which suggested that it might be larger than Pluto. The actual size, however, could not be determined from the optical measurements because the surface reflectivity (albedo) was unknown. Here we report observations of the thermal emission of 2003 UB313 at a wavelength of 1.2 mm, which in combination with the measured optical brightness leads to a diameter of 3,000 +/- 300 +/- 100 km. Here the first error reflects measurement uncertainties, while the second derives from the unknown object orientation. This makes 2003 UB313 the largest known trans-neptunian object, even larger than Pluto (2,300 km). The albedo is 0.60 +/- 0.10 +/- 0.05, which is strikingly similar to that of Pluto, suggesting that the methane seen in the optical spectrum causes a highly reflective icy surface.

摘要

太阳系中已知距离最远的天体2003 UB313(距离太阳97天文单位),是最近在其远日点附近发现的。它的高偏心率和与黄道面的倾角,以及近日点靠近海王星轨道,使其被认定为“离散盘”的成员。这个天体盘可能起源于柯伊伯带天体,它们在30至50天文单位之间以接近黄道面的圆形轨道运行,冥王星可能也是其中一员。如果将2003 UB313的视星等调整到冥王星的距离,其亮度比冥王星高,这表明它可能比冥王星大。然而,由于表面反射率(反照率)未知,无法通过光学测量确定其实际大小。在此,我们报告了对2003 UB313在1.2毫米波长处的热辐射观测结果,结合测量到的光学亮度得出其直径为3000±300±100千米。这里第一个误差反映测量的不确定性,第二个误差源于未知天体的方位。这使得2003 UB313成为已知最大的海王星外天体,甚至比冥王星(2300千米)还大。其反照率为0.60±0.10±0.05,与冥王星惊人地相似,这表明在光谱中看到的甲烷导致了高反射率的冰面。

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