Parijat Thakur, V. Mannaday, I. Jiang, D. Sahu, Swadesh Chand
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引用次数: 3
摘要
本文报道了利用38条光曲线对太阳系外行星卡塔尔-1b进行凌日时变(TTV)分析的结果。我们的分析结合了我们在2016年6月至2016年9月期间使用印度天文台(Hanle, India)的2米喜马拉雅钱德拉望远镜(HCT)观测到的35个先前可用的凌日光曲线和3个新的凌日。根据这些过境数据,确定了卡塔尔-1系统的物理和轨道参数。除此之外,对轨道周期和中凌日时间的星历表进行了改进,以研究可能的TTV。我们发现null-TTV模型能更好地拟合(O-C)数据。这表明,没有证据表明在卡塔尔-1系统中存在其他行星。使用Aryabhatta观测科学研究所(ARIES, Nainital, India)运行的3.6 m Devasthal光学望远镜(DOT)可以提高光度精度,以比目前工作更高的精度检查该系统中ttv的特征。
Investigating Extra-solar Planetary System Qatar-1 through Transit Observations
We report the results of the transit timing variation (TTV) analysis of the extra-solar planet Qatar-1b using thirty eight light curves. Our analysis combines thirty five previously available transit light curves with three new transits observed by us between June 2016 and September 2016 using the 2-m Himalayan Chandra Telescope (HCT) at the Indian Astronomical Observatory (Hanle, India). From these transit data, the physical and orbital parameters of the Qatar-1 system are determined. In addition to this, the ephemeris for the orbital period and mid-transit time are refined to investigate the possible TTV. We find that the null-TTV model provides the better fit to the (O-C) data. This indicates that there is no evidence for TTVs to confirm the presence of additional planets in the Qatar-1 system. The use of the 3.6-m Devasthal Optical Telescope (DOT) operated by the Aryabhatta Research Institute of Observational Sciences (ARIES, Nainital, India) could improve the photometric precision to examine the signature of TTVs in this system with a greater accuracy than in the present work.
期刊介绍:
The ‘Société Royale des Sciences de Liège" (hereafter the Society) regularly publishes in its ‘Bulletin" original scientific papers in the fields of astrophysics, biochemistry, biophysics, biology, chemistry, geology, mathematics, mineralogy or physics, following peer review approval.