Assessing interstellar comet 3I/ATLAS with the 10.4 m Gran Telescopio Canarias and the Two-meter Twin Telescope⋆

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
R. de la Fuente Marcos, M. R. Alarcon, J. Licandro, M. Serra-Ricart, J. de León, C. de la Fuente Marcos, G. Lombardi, A. Tejero, A. Cabrera-Lavers, S. Guerra Arencibia, I. Ruiz Cejudo
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引用次数: 0

Abstract

Context. Theories of the formation and evolution of small bodies in planetary systems predict that they may escape into interstellar space at any time, leaked from extrasolar Oort clouds or ejected following close encounters with local planets or their host stars. After just two such interlopers – 1I/2017 U1 (‘Oumuamua) and 2I/Borisov – had been characterized, more questions had been raised than answered. Assessing the recently discovered interstellar comet 3I/ATLAS will only broaden our understanding of this complex topic.Aims. Here, we investigate the spectral, cometary, and rotational properties of 3I/ATLAS as well as its dynamical context.Methods. We identified the spectral type of 3I/ATLAS from the visible reflectance spectrum and used photometric observations to derive its level of activity and rotational properties. Observational data were obtained with the OSIRIS camera spectrograph at the 10.4 m Gran Telescopio Canarias and the Two-meter Twin Telescope. We used N-body simulations and statistical analyses of Gaia DR3 data to investigate the origin of 3I/ATLAS and its Galactic background.Results. Interstellar comet 3I/ATLAS has a visible spectrum slightly redder than the ones of D-type asteroids, 1I/‘Oumuamua and 2I/Borisov, with a spectral slope of S′ = 18.3 ± 0.9 %/1000 Å in the 4000–9000 Å range, which is similar to the ones of trans-Neptunian objects and Centaurs. It has a conspicuous coma and its rotation period is 16.79 ± 0.23 h. The heliocentric components of its Galactic velocity are km s−1 with a radiant in Sagittarius of (α, δ) = (295.​​°043−0.​​°004+0.​​°003, −19.​​°0704−0.​​°0005+0.​​°0006). The analysis of a sample of kinematic analogs of 3I/ATLAS extracted from Gaia DR3 suggests that its parent system is part of the Galactic thin disk and includes a solar-like star with a slightly subsolar metallicity.Conclusions. The results from the physical characterization of 3I/ATLAS further support the idea that extrasolar debris is not too different from the debris found in the Solar System and that it is the result of similar formation processes.
用10.4米加那利大望远镜和2米双望远镜评估星际彗星3I/ATLAS
上下文。行星系统中小天体的形成和演化理论预测,它们可能随时逃逸到星际空间,从太阳系外的奥尔特云中泄漏出来,或者在与当地行星或其宿主恒星近距离接触后被弹射出来。在两个这样的闯入者——1I/2017 U1 (' Oumuamua)和2I/Borisov——被描述之后,提出的问题比回答的要多。评估最近发现的星际彗星3I/ATLAS只会拓宽我们对这个复杂话题的理解。在这里,我们研究了3I/ATLAS的光谱、彗星和旋转性质以及它的动力学背景。我们从可见反射率光谱中确定了3I/ATLAS的光谱类型,并利用光度观测得出了其活性水平和旋转性质。观测数据由位于10.4 m加那利望远镜和2米双望远镜上的OSIRIS摄谱仪获得。我们使用n体模拟和Gaia DR3数据的统计分析来研究3I/ATLAS的起源及其银河系背景。星际彗星3I/ATLAS的可见光谱比d型小行星1I/ ' Oumuamua和2I/Borisov的略红,在4000-9000 Å范围内的光谱斜率为S ' = 18.3±0.9% /1000 Å,与海王星外天体和半人马座的光谱相似。它有一个明显的彗发,自转周期为16.79±0.23 h。它的星系速度的日心分量为km s−1,在人马座的辐射能为(α, δ) =(295°043 - 0°004+0°003,- 19°0704 - 0°0005+0°0006)。对从盖亚DR3中提取的3I/ATLAS的运动学类似物样本的分析表明,它的母星系是银河系薄盘的一部分,包括一颗类似太阳的恒星,其金属量略低于太阳。3I/ATLAS的物理表征结果进一步支持了太阳系外碎片与太阳系中发现的碎片没有太大不同的观点,它们是类似形成过程的结果。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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