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Non-Vestoid candidate asteroids in the inner main belt

机译:内主带中的非类雌激素候选小行星

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Context. Most howardite-eucrite-diogenite (HED) meteorites (analogues to V-type asteroids) are thought to originate from the asteroid (4) Vesta. However some HEDs show distinct oxygen isotope ratios and therefore are thought to originate from other asteroids. In this study we try to identify asteroids that may represent parent bodies of those mismatching HEDs. Aims. The main goal of this study is to test the hypothesis that there might be V-type asteroids in the inner main asteroid belt unrelated to (4) Vesta. In order to evolve outside the Vesta family and became Vesta fugitives, asteroids should produce the correct Yarkovsky drift. The direction of which is dependent on asteroid sense of rotation. Therefore we focus on determining sense of rotation for asteroids outside the Vesta family to better understand their origin. Methods. We performed photometric observations using the 1.1 m and 1.8 m telescopes at Lowell Observatory to determine rotational synodic periods of selected objects before, at, and after opposition. Prograde rotators show a minimum in synodic period at opposition while retrograde rotators show a maximum. This is known as the “drifting minima” method. Changes in the rotational period are on the order of seconds and fractions of seconds and depend on the rotational pole of the object and the asteroid-observer-Sun geometry at opposition. Results. We have determined sense of rotation for eight asteroids and retrieved spin states for three objects from literature. For one asteroid we were not able to determine the sense of rotation. In total our sample includes 11 V-type asteroids and one S-type (test object). We have revised rotation periods for three objects. Five V-types in our sample can be explained by migration from the Vesta family. Two show spin states that are inconsistent with migration from Vesta. The origin of the remaining objects is ambiguous. Conclusions. We found two objects with rotations inconsistent with migration from Vesta. Assuming that the YORP effect and random collisions did not substantially modify their sense of rotation, those objects are candidates for non-Vestoids in the inner asteroid belt. Finding more non-Vestoids is crucial in testing the formation and migration theory of differentiated parent bodies.
机译:上下文。多数杂钙铁矿-钙长石-陨石(HED)陨石(类似于V型小行星)都起源于小行星(4)Vesta。但是,某些HED表现出不同的氧同位素比,因此被认为是源自其他小行星。在这项研究中,我们试图确定可能代表那些不匹配的HED的母体的小行星。目的这项研究的主要目的是检验以下假设:内部主要小行星带中可能存在与(4)Vesta不相关的V型小行星。为了在Vesta家族之外进化并成为Vesta逃犯,小行星应产生正确的Yarkovsky漂移。其方向取决于小行星的旋转方向。因此,我们专注于确定Vesta家族以外的小行星的旋转方向,以便更好地了解其起源。方法。我们在洛厄尔天文台使用1.1 m和1.8 m望远镜进行了光度学观测,以确定对峙前后,对峙后和对峙后所选物体的旋转同步周期。逆行旋转者在对立的对立会期间显示出最小值,而逆行旋转者则在对立时显示出最大值。这就是所谓的“最小漂移”方法。旋转周期的变化约为秒级和几分之一秒,并取决于物体的旋转极点和相对的小行星-观察者-太阳几何形状。结果。我们已经确定了八个小行星的旋转方向,并从文献中检索了三个物体的自旋状态。对于一颗小行星,我们无法确定旋转方向。我们的样本总共包括11个V型小行星和一个S型(测试对象)。我们修改了三个对象的旋转周期。我们样品中的五种V型可以通过从Vesta家族迁移来解释。两个显示出与自Vesta迁移不一致的自旋状态。其余对象的来源是不明确的。结论。我们发现两个旋转与从Vesta迁移的物体不一致的物体。假设YORP效应和随机碰撞并没有实质性地改变它们的旋转方向,则这些物体是小行星内部带中非类星体的候选者。寻找更多非类固醇对于测试分化母体的形成和迁移理论至关重要。

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