论文标题

关于Oumuamua的纵横比:不规则表面特性的细长形状较小

On the aspect ratio of Oumuamua: less elongated shape for irregular surface properties

论文作者

Vazan, A., Sari, R.

论文摘要

OUMUAMUA观察到的灯曲线的较大亮度变化可能与其形状有关,即与其最长轴与最短轴(纵横比)之间的比率有关。几种方法发现Oumuamua的长宽比异常伸长。此外,旋转轴方向必须几乎垂直于观察者,才能获得这种极端的光曲线,这种构型不太可能。但是,星际OUMUAMUA的表面特性可能与我们在太阳系中所知道的不同。因此,在这项工作中,我们扩大了表面特性的参数空间,超出了小行星样模型,并研究了其对Oumuamua灯泡的影响。我们从四个型号的旋转椭圆形对象中计算反射:兰伯特反射,镜面反射,单个散射扩散和反向散射。然后,我们计算获得大于观察到的光曲线比的概率作为对象纵横比的函数,假设同位素旋转方向分布。我们发现,对于兰伯特和镜面反射模型,Oumuamua的延伸并不那么极端。因此,考虑到这些模型的未知旋转轴取向,观察Oumuamua的灯曲线比的可能性更大。我们得出的结论是,不同的表面反射特性可能建议替代Oumuamua的极端形状,从而减轻了对复杂的形成场景,极端反照率变化或不自然的起源的需求。尽管此处建议的模型是理想的椭圆形形状和理想反射方法,但结果强调了表面特性对派生的纵横比的重要性。

The large brightness variation in the observed lightcurve of Oumuamua is probably related to its shape, i.e., to the ratio between its longest axis and its shortest axis (aspect ratio). Several approaches found the aspect ratio of Oumuamua to be unusually elongated. Moreover, the spin axis orientation has to be almost perpendicular to the observer in order to obtain such an extreme lightcurve, a configuration which is unlikely. However, interstellar Oumuamua may have different surface properties than we know in our solar system. Therefore, in this work we widen the parameter space for surface properties beyond the asteroid-like models and study its effect on the lightcurve of Oumuamua. We calculate reflection from a rotating ellipsoidal object for four models: Lambertian reflection, specular reflection, single scattering diffusive and backscatter. We then calculate the probability to obtain a lightcurve ratio larger than the observed, as a function of the object aspect ratio, assuming an isotopic spin orientation distribution. We find the elongation of Oumuamua to be less extreme for the Lambertian and specular reflection models. Consequently, the probability to observe the lightcurve ratio of Oumuamua given its unknown spin axis orientation is larger for those models. We conclude that different surface reflection properties may suggest alternatives to the extreme shape of Oumuamua, relieving the need for complicated formation scenario, extreme albedo variation, or unnatural origin. Although the models suggested here are for ideal ellipsoidal shape and ideal reflection method, the results emphasize the importance of surface properties for the derived aspect ratio.

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