论文标题

远处,入站彗星C/2017 k2(Panstarrs)的灰尘演变

Dust Evolution in the Coma of Distant, Inbound Comet C/2017 K2 (PANSTARRS)

论文作者

Zhang, Qicheng, Kolokolova, Ludmilla, Ye, Quanzhi, Vissapragada, Shreyas

论文摘要

C/2017 K2(PANSTARRS)是以前观察到的Oort云彗星,在HeliePentric距离上r> 20 AU在可能的第一次通过内部太阳系上是有效的。我们在3月19日至20日以r = 6.82 AU前期前延期和8.35度的相角观察到与哈勃空间望远镜(HST)的彗星,并获得了高空间分辨率光度法和偏振光映射,并在水冰升华活动的发作之前,将粉尘的性质映射到昏迷的特性。我们在昏迷的颜色和极化中发现了清晰的径向梯度:F47​​5W -F775W(G' -i')反射率坡度从〜4.5%的每100 nm左右在〜10,000 km的核中增加到每100 nm的〜7%nm左右,而在〜50,000 km中,而在F775W(i')中的负极化量为〜50,000 km,而从f775w(I')中造成了负相同。径向强度曲线此外,远离模拟稳定粉尘晶粒的轮廓。 5月18日在r = 6.34 au时,用Palomar Hale望远镜获得的近红外图像显示,尾巴上持续没有微米大小的晶粒,但在JHKS颜色中没有明确的空间梯度。观察到的图案统称与内部昏迷相统一,与更稳定,毫米大小的谷物的尾巴的升华,微米大小的水冰晶粒在光学上占主导地位。最后,我们与其他Oort云彗星一起评估了这些结果,并在对C/2012 S1(ISON)的HST观察结果的重新分析中发现,近核的偏光晕halo报道了该彗星可能是观察性伪像。

C/2017 K2 (PANSTARRS) is an Oort cloud comet previously observed to be active at heliocentric distances r>20 au on what is likely its first passage through the inner solar system. We observed the comet on 2021 March 19-20 at r=6.82 au pre-perihelion and 8.35 deg phase angle with the Hubble Space Telescope (HST), and obtained high spatial resolution photometry and polarimetry mapping the properties of dust over the coma prior to the onset of water ice sublimation activity on the nucleus. We found clear radial gradients in the color and polarization of the coma: the F475W-F775W (g'-i') reflectance slope increased from ~4.5% per 100 nm within ~10,000 km of the nucleus up to ~7% per 100 nm by ~50,000 km, while the negative polarization in F775W (i') strengthened from about -2% to -3.5% over the same range. The radial intensity profiles moreover strongly deviate from profiles simulated for stable dust grains. Near-infrared imagery obtained with the Palomar Hale Telescope on 2021 May 18 at r=6.34 au revealed a continued absence of micron-sized grains in the tail, but showed no clear spatial gradient in JHKs colors. The observed patterns collectively appear consistent with the inner coma being optically dominated by sublimating, micron-sized water ice grains, unlike the tail of more stable, millimeter-sized grains. Finally, we evaluated these results alongside other Oort cloud comets, and found in a reanalysis of HST observations of C/2012 S1 (ISON) that the near-nucleus polarimetric halo reported for that comet is likely an observational artifact.

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