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小行星(101955)本努的起源及其与新波兰纳家族的联系。

Origin of asteroid (101955) Bennu and its connection to the New Polana family.

作者信息

Takir Driss, Emery Joshua P, Bottke William F, Arredondo Anicia

机构信息

Jacobs, NASA Johnson Space Center, Houston, TX, USA.

Northern Arizona University, Flagstaff, AZ, USA.

出版信息

Sci Rep. 2024 Jul 10;14(1):15965. doi: 10.1038/s41598-024-66237-0.

Abstract

The asteroid (142) Polana is classified as a B-type asteroid located in the inner Main Belt. This asteroid is the parent of the New Polana family, which has been proposed to be the likely source of primitive near-Earth asteroids such as the B-type asteroid (101955) Bennu. To investigate the compositional correlation between Polana and Bennu at the 3 µm band and their aqueous alteration histories, we analyzed the spectra of Polana in the ~ 2.0-4.0 µm spectral range using the NASA Infrared Telescope Facility in Hawai'i. Our findings indicate that Polana does not exhibit discernable 3 µm hydrated mineral absorption (within 2σ), which is in contrast to asteroid Bennu. Bennu displayed a significant 3 µm absorption feature similar to CM- and CI-type carbonaceous chondrites. This suggests two possibilities: either Bennu did not originate from the New Polana family parented by asteroid Polana or the interior of Bennu's parent body was not homogenous, with diverse levels of aqueous alteration. Several explanations support the latter possibility, including heating due to shock waves and pressure, which could have caused the current dehydrated state of Bennu's parent body.

摘要

小行星(142)“波拉娜”被归类为位于主带内侧的B型小行星。这颗小行星是新“波拉娜”族的母体,有人提出它可能是诸如B型小行星(101955)“贝努”等原始近地小行星的来源。为了研究“波拉娜”和“贝努”在3微米波段的成分相关性及其水蚀变历史,我们利用位于夏威夷的美国国家航空航天局红外望远镜设施,分析了“波拉娜”在约2.0 - 4.0微米光谱范围内的光谱。我们的研究结果表明,“波拉娜”没有表现出可辨别的3微米水合矿物吸收(在2σ范围内),这与小行星“贝努”形成对比。“贝努”显示出显著的3微米吸收特征,类似于CM型和CI型碳质球粒陨石。这表明有两种可能性:要么“贝努”并非起源于由小行星“波拉娜”作为母体的新“波拉娜”族,要么“贝努”母体的内部并非均匀一致,具有不同程度的水蚀变。有几种解释支持后一种可能性,包括冲击波和压力导致的加热,这可能导致了“贝努”母体目前的脱水状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee76/11236983/3ed0db6b669f/41598_2024_66237_Fig1_HTML.jpg

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