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Autori principali: Jiang, Dongyue, Qian, Lei, Guo, Minglei, Hao, Qiaoli, Huang, Menglin, Jiang, Peng, Liu, Hongfei, Sun, Chun, Wang, Xingyi, Yang, Qingliang, Yu, Naiping, Zhao, Lei, Zhao, Yutao, Zhang, Liyun, Zhang, Yichi, Zhang, Tongjie, Pan, Zhichen
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2512.21969
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author Jiang, Dongyue
Qian, Lei
Guo, Minglei
Hao, Qiaoli
Huang, Menglin
Jiang, Peng
Liu, Hongfei
Sun, Chun
Wang, Xingyi
Yang, Qingliang
Yu, Naiping
Zhao, Lei
Zhao, Yutao
Zhang, Liyun
Zhang, Yichi
Zhang, Tongjie
Pan, Zhichen
author_facet Jiang, Dongyue
Qian, Lei
Guo, Minglei
Hao, Qiaoli
Huang, Menglin
Jiang, Peng
Liu, Hongfei
Sun, Chun
Wang, Xingyi
Yang, Qingliang
Yu, Naiping
Zhao, Lei
Zhao, Yutao
Zhang, Liyun
Zhang, Yichi
Zhang, Tongjie
Pan, Zhichen
contents We observed comet C/2025 A6 with the Five-hundred-meter Aperture Spherical radio Telescope (FAST) equipped with the ultra-wideband receiver from 2025 October 23 to November 8, and it was the first detection for this comet with FAST.Through trapezoidal fitting of the OH line profiles, we derived the expansion velocities of the water which showed an increase from 1.5$\pm$0.3 km s$^{-1}$ at the heliocentric distance of 0.65 AU to 3.0$\pm$0.9 km s$^{-1}$ at 0.54 AU. Based on these results, we estimated the OH production rates of C/2025 A6 for October 23, October 26, November 4 and November 5 which were (1.0$\pm$0.1)$\times$10$^{29}$, (1.2$\pm$0.1)$\times$10$^{29}$, (1.4$\pm$0.3)$\times$10$^{29}$, and (1.5$\pm$0.4)$\times$10$^{29}$ s$^{-1}$ respectively. The results show a significant upward trend.
format Preprint
id arxiv_https___arxiv_org_abs_2512_21969
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle From emission to absorption: the FAST observation of the OH 18-cm lines from the Comet C2025/A6
Jiang, Dongyue
Qian, Lei
Guo, Minglei
Hao, Qiaoli
Huang, Menglin
Jiang, Peng
Liu, Hongfei
Sun, Chun
Wang, Xingyi
Yang, Qingliang
Yu, Naiping
Zhao, Lei
Zhao, Yutao
Zhang, Liyun
Zhang, Yichi
Zhang, Tongjie
Pan, Zhichen
Earth and Planetary Astrophysics
Astrophysics of Galaxies
We observed comet C/2025 A6 with the Five-hundred-meter Aperture Spherical radio Telescope (FAST) equipped with the ultra-wideband receiver from 2025 October 23 to November 8, and it was the first detection for this comet with FAST.Through trapezoidal fitting of the OH line profiles, we derived the expansion velocities of the water which showed an increase from 1.5$\pm$0.3 km s$^{-1}$ at the heliocentric distance of 0.65 AU to 3.0$\pm$0.9 km s$^{-1}$ at 0.54 AU. Based on these results, we estimated the OH production rates of C/2025 A6 for October 23, October 26, November 4 and November 5 which were (1.0$\pm$0.1)$\times$10$^{29}$, (1.2$\pm$0.1)$\times$10$^{29}$, (1.4$\pm$0.3)$\times$10$^{29}$, and (1.5$\pm$0.4)$\times$10$^{29}$ s$^{-1}$ respectively. The results show a significant upward trend.
title From emission to absorption: the FAST observation of the OH 18-cm lines from the Comet C2025/A6
topic Earth and Planetary Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2512.21969