Ionic emission from and activity evolution in comet C/2020 F3 (NEOWISE): Insights from long-slit spectroscopy and photometry

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
K. Aravind, E. Jehin, S. Hmmidouch, M. Vander Donckt, S. Ganesh, P. Rousselot, P. Hardy, D. Sahu, J. Manfroid, Z. Benkhaldoun
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引用次数: 0

Abstract

Aims. The long-period comet C/2020 F3 (NEOWISE) was the brightest comet in the northern hemisphere since C/1995 O1 (Hale-Bopp). These comets offer a unique opportunity to study their composition and the spatial variation in the different emission in detail. We conducted long-slit low-resolution spectroscopy and narrow-band photometry to track the evolution of its activity and composition during several weeks after perihelion. The images were used to compute the production rates of neutral molecular species and dust, and the spectrum was used to analyse the variation in the emission along the spatial axis in the sunward and anti-sunward directions to detect ionic emission.Methods. Narrow-band (OH[3090 Å], NH[3362 Å], CN[3870 Å], C2[5140 Å], C3[4062 Å], BC[4450 Å], GC[5260 Å], and RC[7128 Å]) and broad-band (Johnson-Cousins B, V, Rc, Ic) images of comet C/2020 F3 were taken with TRAPPIST-North from 22 July to 10 September 2022 to track the production rates, the evolution of the chemical mixing ratios with solar distance, and the proxy to the dust production (A(0)fρ). A long-slit low-resolution spectrum was obtained on 24 July 2020 using HFOSC on the 2 m HCT at IAO, Hanle. Spectra extracted along the spatial axis in the sunward and anti-sunward directions enabled a comparative analysis of the emission in both directions.Results. We report production rates and mixing ratios of OH, NH, CN, C2, C3, and NH2 and used the flux density of the forbidden oxygen line to derive the water-production rate. Ionic emission from N2+, CO+, CO2+, and H2O+ was detected at 4 × 104 km to 1 × 105 km from the photocentre in the tail direction. The average N2+/CO+ ratio for the CO+ (3-0) and (2-0) bands measured from the spectrum was (3.0 ± 1.0) × 10–2, which we further refined to (4.8 ± 2.4) × 10–2 using fluorescence modelling techniques. We measured the CO2+/CO+ ratio to be 1.34 ± 0.21. Combining the N2+/CO+ and CO2+/CO+ ratios, we suggest the comet to have formed in the cold mid-outer nebula (~50–70 K). Furthermore, the average rotation period of the comet was calculated to be 7.28 ± 0.79 hours with a CN gas outflow velocity of 2.40 ± 0.25 km/s.
彗星C/2020 F3 (NEOWISE)的离子发射和活性演化:来自长缝光谱和光度学的见解
目标。长周期彗星C/2020 F3 (NEOWISE)是自C/1995 O1(海尔-波普)以来北半球最亮的彗星。这些彗星提供了一个独特的机会来详细研究它们的组成和不同发射的空间变化。我们进行了长缝低分辨率光谱和窄带光度测定,以跟踪近日点后几周内其活动和成分的演变。利用图像计算中性分子和尘埃的产生率,利用光谱分析向太阳和反太阳方向沿空间轴的发射变化,以探测离子发射。利用TRAPPIST-North于2022年7月22日至9月10日拍摄了C/2020 F3彗星的窄带(OH[3090 Å], NH[3362 Å], CN[3870 Å], C2[5140 Å], C3[4062 Å], BC[4450 Å], GC[5260 Å]和RC[7128 Å])和宽带(johnscoinsb, V, RC, Ic)图像,以跟踪其产生速率,化学混合比随太阳距离的演变,以及尘埃产生的代理(A(0)fρ)。2020年7月24日,利用HFOSC在武汉国际空间站的2米HCT上获得了一个长缝低分辨率光谱。沿空间轴向太阳和反太阳方向提取的光谱可以对两个方向的发射进行比较分析。我们报告了OH、nhh、CN、C2、C3和NH2的产水速率和混合比例,并使用禁氧线的通量密度来推导出产水速率。在尾向距离光中心4 × 104 ~ 1 × 105 km处检测到N2+、CO+、CO2+和H2O+的离子发射。从光谱中测量到的CO+(3-0)和(2-0)波段的平均N2+/CO+比值为(3.0±1.0)× 10-2,利用荧光建模技术进一步细化为(4.8±2.4)× 10-2。我们测得CO2+/CO+比值为1.34±0.21。结合N2+/CO+和CO2+/CO+比值,我们认为这颗彗星形成于寒冷的星云中外部(~ 50-70 K)。此外,该彗星的平均旋转周期为7.28±0.79小时,CN气体流出速度为2.40±0.25 km/s。
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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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