Man-To 文韜 Hui 許, R. Weryk, Marco Micheli, Zhong 中 Huang 黃, R. Wainscoat
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引用次数: 0
Abstract
We identified a new ultradistant comet C/2019 E3 (ATLAS) exhibiting preperihelion cometary activity at heliocentric distances ≳20 au, making it the fourth member of this population after C/2010 U3 (Boattini), C/2014 UN271 (Bernardinelli–Bernstein), and C/2017 K2 (PANSTARRS). From serendipitous archival data, we conducted analyses of the comet, finding that the activity was consistent with steady-state behavior, suggestive of sublimation of supervolatiles; that the cross section of dust increased gradually on the inbound leg of the orbit, varying with heliocentric distances as
r
H
−
1.5
±
0.4
; and that the dust was produced at a rate of ≳102 kg s−1 within the observed timespan. Our modeling of the largely symmetric morphology of the comet suggests that the dust environment was likely dominated by mm-scale dust grains ejected at speeds ≲0.4 m s−1 from the sunlit hemisphere of the nucleus. Assuming a typical geometric albedo of 0.05 and adopting several simplistic thermophysical models, we estimated the nucleus to be at least ∼3 km across. We also measured the color of the comet to be consistent with other long-period comets, except being slightly bluer in g − r. With our astrometric measurements, we determined an improved orbit of the comet, based upon which we derived that the comet is dynamically new and that its perihelion distance will further shrink due to the Galactic tide. We conclude the paper by comparing the known characteristics of the known ultradistant comets.
我们发现了一颗新的超距彗星C/2019 E3(ATLAS),它在日心距离≳20 au处表现出近日点前的彗星活动,是继C/2010 U3(Boattini)、C/2014 UN271(Bernardinelli-Bernstein)和C/2017 K2(PANSTARRS)之后该族群的第四颗成员。根据偶然获得的档案数据,我们对这颗彗星进行了分析,发现其活动与稳态行为一致,表明是超物质的升华;尘埃截面在轨道的入轨段逐渐增大,随日心距离的变化而变化,r H - 1.5 ± 0.4;在观测时间跨度内,尘埃的产生速率为 ≳102 kg s-1。我们对彗星大体对称的形态所做的建模表明,尘埃环境很可能是由从彗核的阳光半球以≲0.4 m s-1的速度喷出的毫米级尘粒所主导的。假设典型的几何反照率为 0.05,并采用几个简单的热物理模型,我们估计星核的直径至少为 3 公里。我们还测量了这颗彗星的颜色,发现它与其他长周期彗星的颜色一致,只是在 g - r 值上略微偏蓝。通过天体测量,我们确定了这颗彗星的改进轨道,并据此推断这颗彗星是动态新生的,它的近日点距离会因银河系潮汐而进一步缩小。最后,我们对已知超距彗星的特征进行了比较。